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W. Goodman, “Statistical properties of laser speckle patterns,” in Laser Speckle and Related Phenomena, 2nd ed., J. C. Dainty, ed. (Spring-Verlag, New York, 1984).\nJ. C. Dainty, “The Statistics of speckle patterns,” in Progress in Optics XIV, E. Wolf, ed. (North-Holland, New York, 1976).\nC.S. Gardner, “Target signature for laser altimeters: an analysis,” Appl. Opt. 21 448-453 (1982).\nB. M. Tsai and C. S. Gardner, “Remote sensing of sea state using laser altieters,” Appl. Opt. 21 3932-3940 (1982).\nA. Papoulis, Probability, Random Variables and Stochastic Processes (McGraw-Hill, Tokyo, 1965).\nE. Menzel and B. Stoffregen, “Autocorrelation functions of a general scattering object and its averaged coherent image and diffraction patterns,” Optik. 46 203-210 (1976).\nB. Ruffing, “Application of speckle-correlation methods to surface-roughness measurement: a theoretical study,” J. Opt. Soc. Am. A 2, 1297-1304 (1986).\nP. Lehmann, “Surface-roughness measurement based on the intensity correlation function of scattered light under speckle-pattern illumination,” Appl. Opt. 38, 1144-1152 (1999)\nM. Zribi, V. Ciarletti, and O. Taconet, “Validation of a rough surface model based on fractional Brownian geometry with SIRC and ERASME radar data over Orgeval,” Remote Sens. Environ., 73, 65-72 (2000).\nE. P. Mackerrow and M. J. Schmitt, “Measurement of integrated speckle statistics for CO2 lidar returns from a moving, nonuniform, hard target,” Appl. Opt. 36, 6921-6937 (1997).",{"EN":77,"VI":78},"The statistical properties of speckle patterns generated from far rough surfaces, under illumination of a Gaussian beam, are investigated. The surface roughness dependence of the first- and second-order moments of intensity is theoretically investigated, and their analytical expressions have been derived and presented. The analysis indicates that the mean intensity distribution on the receiver plane is closely related to the ratio of the lateral correlation length to the surface root mean square (rms) height. On the other hand, the speckle size and the correlation degree of the speckle intensities are found to be independent of the parameter characterizing the roughness of a surface, and are only determined by the laser beam waist.","Các thuộc tính thống kê của các mẫu điểm hiện được tạo ra từ các bề mặt thô xa, dưới sự chiếu sáng của một chùm laser Gaussian, đã được nghiên cứu. Mối phụ thuộc của độ nhám bề mặt đối với các khoảng thời gian bậc nhất và bậc hai của cường độ đã được nghiên cứu lý thuyết, và các biểu thức phân tích của chúng đã được rút ra và trình bày. Phân tích chỉ ra rằng phân bố cường độ trung bình trên mặt phẳng nhận liên quan chặt chẽ đến tỉ lệ giữa độ dài tương quan bên và chiều cao trung bình bình phương (rms) của bề mặt. Mặt khác, kích thước điểm hiện và mức độ tương quan của cường độ điểm hiện được phát hiện là không phụ thuộc vào tham số đặc trưng cho độ nhám của bề mặt, mà chỉ được xác định bởi đường kính chùm laser.",{"EN":80,"VI":81},"Statistical Properties of Laser Speckles Generated from Far Rough Surfaces","Các thuộc tính thống kê của các mẫu điểm hiện được tạo ra từ các bề mặt thô xa",{"VOID":83},"10.1023\u002FA:1015015232213",{"VI":85},"điểm hiện, bề mặt thô xa, chùm laser Gaussian, độ nhám bề mặt, phân bố cường độ","PUBLICATION","VERIFIED","2025-02-05T20:44:52.653+00:00","Auto Verify",[91],"VI","https:\u002F\u002Flink.springer.com\u002Farticle\u002F10.1023\u002FA:1015015232213",[94,112,124],{"id":95,"sortIndex":96,"researcher":22,"roles":97,"affiliations":99,"properties":109},"8742043e-6623-498e-8404-716894e532ef",1,[98],"AUTHOR",[100],{"id":22,"sortIndex":23,"affiliation":101,"properties":22},{"id":102,"createTime":103,"updateTime":103,"relativeEntities":104,"slug":22,"properties":105,"entityType":108,"verifyStatus":21,"verifyTime":22,"verifyNote":22,"syncStatus":21,"languages":22,"translateLanguages":22,"viewCount":23},"1bdfdcde-d4a6-4f74-8acd-acb514170538","2024-01-04T10:48:50.860+00:00",[],{"title":106},{"VI":107},"Laboratory of Remote Sensing Information Sciences, Institue of Remote Sensing Applications, Chinese Academy of Sciences, Beijing, People's Republic of China","AFFILIATION",{"title":110},{"VI":111},"Shukai Li",{"id":113,"sortIndex":23,"researcher":22,"roles":114,"affiliations":115,"properties":121},"b96fbb49-f419-48d0-abec-bd0edc4b0d02",[98],[116],{"id":22,"sortIndex":23,"affiliation":117,"properties":22},{"id":102,"createTime":103,"updateTime":103,"relativeEntities":118,"slug":22,"properties":119,"entityType":108,"verifyStatus":21,"verifyTime":22,"verifyNote":22,"syncStatus":21,"languages":22,"translateLanguages":22,"viewCount":23},[],{"title":120},{"VI":107},{"title":122},{"VI":123},"Guanjun Guo",{"id":125,"sortIndex":126,"researcher":22,"roles":127,"affiliations":128,"properties":134},"bd288ac5-be86-4ac0-9c0e-844f44946235",2,[98],[129],{"id":22,"sortIndex":23,"affiliation":130,"properties":22},{"id":102,"createTime":103,"updateTime":103,"relativeEntities":131,"slug":22,"properties":132,"entityType":108,"verifyStatus":21,"verifyTime":22,"verifyNote":22,"syncStatus":21,"languages":22,"translateLanguages":22,"viewCount":23},[],{"title":133},{"VI":107},{"title":135},{"VI":136},"Qulin Tan","ARTICLE",{"url":92,"publisher":139,"properties":154},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":140,"slug":10,"properties":141,"entityType":20,"verifyStatus":21,"verifyTime":22,"verifyNote":22,"syncStatus":21,"languages":22,"translateLanguages":22,"viewCount":23,"subjectFields":146,"manageAffiliations":147,"indexDatabases":148,"url":22,"thumbnailPath":22,"statistic":149,"gsStatistic":22,"type":62,"analyzePriority":22},[],{"issn":142,"eissn":143,"title":144,"url":145},{"VOID":13},{"VOID":15},{"EN":17},{"VOID":19},[],[],[],{"impactFactor":23,"impactFactorByYear":150,"i10Index":23,"i10IndexLast5Year":23,"totalPublication":29,"totalPublicationByYear":151,"totalCitation":23,"totalCitationByYear":152,"totalCitationPerPublication":23,"totalCitationPerPublicationByYear":153,"hindexLast5Year":23,"hindex":23},{},{"1980":31,"1981":32,"1982":33,"1983":34,"1984":35,"1985":36,"1986":37,"1987":38,"1988":39,"1989":40,"1990":41,"1991":42,"1992":43,"1993":44,"1994":45,"1995":46,"1996":47,"1997":48,"1998":49,"1999":50,"2000":51,"2001":52,"2002":53,"2003":46,"2004":54,"2005":55,"2006":56,"2007":57,"2008":58,"2009":53,"2010":59},{},{},{"volume":155,"pages":157},{"VOID":156},"22",{"VOID":158},"1177-1191","2001-08-01",2001,false,{"id":163,"createTime":164,"updateTime":165,"relativeEntities":166,"slug":167,"properties":168,"entityType":86,"verifyStatus":87,"verifyTime":165,"verifyNote":89,"syncStatus":21,"languages":22,"translateLanguages":22,"viewCount":23,"primaryUrl":177,"fullTextUrl":178,"authors":179,"publicationType":137,"publisherRelationship":245,"citationCount":22,"citationInfo":22,"publishDate":268,"publishYear":269,"citationAnalyzeStatus":21,"lastCitationAnalyze":22,"indexDatabases":22,"openAccess":22,"references":22,"isForceReanalyzing":161},"c2c86f54-fc4f-4d40-ac40-82120041d712","2024-02-07T23:52:18.079+00:00","2025-02-11T23:59:53.083+00:00",[],"Investigation-of-the-Dielectric-Loaded-Folded-Waveguide-Traveling-Wave-Tube-Amplifier",{"references":169,"abstract":171,"title":173,"doi":175},{"VOID":170},"citation_journal_title=IEEE Transactions on Plasma Science; citation_title=Linearized Field Theory of a Dielectric-Loaded Helix Traveling Wave Tube Amplifier; citation_author=HP Freund, EG Zaidman, MA Kodis, NR Vanderplaats; citation_volume=24; citation_issue=3; citation_publication_date=1996; citation_pages=895-904; citation_doi=10.1109\u002F27.533093; citation_id=CR1\ncitation_journal_title=IEEE Transactions on Plasma Science; citation_title=A Gyrotron-Traveling-Wave Tube Amplifier Experiment with a Ceramic Loaded Interaction Region; citation_author=M Garven, JP Calame, BG Danly; citation_volume=30; citation_issue=3; citation_publication_date=2002; citation_pages=885-893; citation_doi=10.1109\u002FTPS.2002.801650; citation_id=CR2\nG. Dohler, D. Gagne, D. Gallagher, and R. Moats. Serpentine Waveguide TWT. IEEE International Electron Devices Meeting 487–488 (1987).\ncitation_journal_title=IEEE Transactions on Plasma Science; citation_title=Folded Waveguide Traveling-Wave Tube Sources for Terahertz Radiation; citation_author=S Bhattacharjee, JH Booske, CL Kory; citation_volume=32; citation_issue=3; citation_publication_date=2004; citation_pages=1002-1014; citation_doi=10.1109\u002FTPS.2004.828886; citation_id=CR4\ncitation_journal_title=International Journal of Infrared and Millimeter Waves; citation_title=Theoretical Study for Folded Waveguide Traveling Wave Tube; citation_author=H-J Ha, S-S Jung, G-S Park; citation_volume=19; citation_issue=9; citation_publication_date=1998; citation_pages=1229-1245; citation_doi=10.1023\u002FA:1022676827050; citation_id=CR5\nD. P. Starinshak, and J. D. Wilson. Investigating Dielectric and Metamaterial Effects in a Terahertz Traveling-Wave Tube Amplifier, NASA\u002FTM—2008-215059, available electronically at \n                    http:\u002F\u002Fgltrs.grc.nasa.gov\n                    \n                  .\ncitation_title=Electromagnetic Theory for Microwave and Optoelectronics; citation_publication_date=2001; citation_id=CR7; citation_author=Zhang K-q; citation_author=Li D-j; citation_publisher=Publishing House of Electronics Industry\ncitation_journal_title=IEEE Transactions on Plasma Science; citation_title=Large-signal Characteristics of a Wide-Band Dielectric-Loaded Gyro-TWT Amplifier; citation_author=KC Leou, DB McDermott, NC Luhmann; citation_volume=24; citation_issue=3; citation_publication_date=1996; citation_pages=718-726; citation_doi=10.1109\u002F27.533073; citation_id=CR8\nP. H. Vartanian, W. P. Ayres, and A. L. Helgesson. Propagation in Dielectric Slab Loaded Rectangular Waveguide. IEEE Transactions Microwave Theory Technology 215–222 (1958).\ncitation_journal_title=IEEE Transactions on Plasma Science; citation_title=Analysis of a Broadband Q Band Folded Waveguide Traveling-Wave Tube; citation_author=YH Na, SW Chung, JJ Choi; citation_volume=30; citation_issue=3; citation_publication_date=2002; citation_pages=1017-1023; citation_doi=10.1109\u002FTPS.2002.801638; citation_id=CR10\ncitation_title=Electron Beams and Microwave Vacuum Electronics; citation_publication_date=2006; citation_id=CR11; citation_author=SE Tsimring; citation_publisher=Wiley\ncitation_journal_title=IEEE Transactions on Electron Devices; citation_title=Linear Theory of Slow Wave Cyclotron Interaction in Double-Ridged Folded Rectangular Waveguide; citation_author=AK Ganguly, JJ Choi, CM Armstrong; citation_volume=42; citation_issue=2; citation_publication_date=1995; citation_pages=348-355; citation_doi=10.1109\u002F16.370058; citation_id=CR12",{"EN":172},"The cold-test characteristics of the dielectric-loaded folded waveguide traveling-wave tube (FWTWT) amplifier are investigated theoretically and the Pierce small-signal theory is employed to confirm the results. For the purpose of analysis, the discussions are separated into symmetric case and unsymmetrical case according to the loading form of the dielectrics. The calculation results indicate that both of them, especially the unsymmetrical form, can significantly reduce the phase velocity and flatten the dispersion curve. However, loading dielectric in an unsymmetrical form will lead to a large decrease in the on-axis interaction impedance, thus it is recommended to use the symmetrical form. It is further found that when the thickness of the dielectric is small, i.e. h 1\u002Fa ≤ 0.1, the interaction impedance is slightly affected by the variations on dielectric constant. The Pierce linear theory for a Q-band dielectric-loaded FWTWT amplifier shows that the bandwidth is increased from 15.08% to 27.03% and the operating voltage is decreased from 20.5&nbsp;kv to 18.6&nbsp;kv.",{"EN":174},"Investigation of the Dielectric-Loaded Folded Waveguide Traveling-Wave Tube 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C. Owen. “Optical Refractive Index of Air: Dependence on Pressure, Temperature and Composition,” Appl. Optics. 6 (1967) 51-58.\nE. P. Baltisavia. “Airborne Laser Scanning: Existing Systems and Firms and Other Resource,” ISPRS Journal of Photogrammetry & Remote Sensing. 54 (1999) 164-198.\nL. Levi. Applied Optics: A Guide to Optical System Design. John Wiley & Son, New York, 1980. P79.\nJ.W. Strohbehn. Laser beam Propagation in the Atmosphere. Sping-Verlag, New York, 1978. P10.",{"EN":484},"The vertical profiles of atmospheric pressure and optical refractive index have been theoretically analyzed. The refractive index can be determined at any altitude above the sea level in the troposphere. 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J. Harris, “Groove Guide for Short Millimetric Waveguide Systems,” ≪Infrared and Millimeter Waves≫ Vol. 11, pp. 99–140\nYang Hong-sheng, Ma Jianglei and Lu Zhong-zuo, “The Characteristic Equation and Solution of Circular-Groove Guide” International Journal of Infrared and Millimeter Waves. Vol, 12, No. 5, 1991",{"EN":549},"On the basis of the studies of single circular groove guide and single rectangular groove guide, the coupling of the two waveguides has been researched and the characteristic equation of circular—rectangular groove guide has been given in this paper.",{"EN":551},"Study of coupling between circular groove guide and rectangular groove guide",{"VOID":553},"10.1007\u002FBF01011606","https:\u002F\u002Flink.springer.com\u002Farticle\u002F10.1007\u002FBF01011606",[556,571,583],{"id":557,"sortIndex":96,"researcher":22,"roles":558,"affiliations":559,"properties":568},"b46f4e7d-bbed-4285-9a81-7b88ab3a3cec",[98],[560],{"id":22,"sortIndex":23,"affiliation":561,"properties":22},{"id":562,"createTime":563,"updateTime":563,"relativeEntities":564,"slug":22,"properties":565,"entityType":108,"verifyStatus":21,"verifyTime":22,"verifyNote":22,"syncStatus":21,"languages":22,"translateLanguages":22,"viewCount":23},"46942353-8cb2-496e-86de-55cecb03a1aa","2024-01-10T11:01:13.645+00:00",[],{"title":566},{"VI":567},"State Key Laboratory of Millimeter Wave, Southeast University, Nanjing, People's Republic of China",{"title":569},{"VI":570},"Yang Hong-sheng",{"id":572,"sortIndex":126,"researcher":22,"roles":573,"affiliations":574,"properties":580},"6f0a7b46-a995-4489-a485-a8cd7b4e3406",[98],[575],{"id":22,"sortIndex":23,"affiliation":576,"properties":22},{"id":562,"createTime":563,"updateTime":563,"relativeEntities":577,"slug":22,"properties":578,"entityType":108,"verifyStatus":21,"verifyTime":22,"verifyNote":22,"syncStatus":21,"languages":22,"translateLanguages":22,"viewCount":23},[],{"title":579},{"VI":567},{"title":581},{"VI":582},"Lu Zhong-zou",{"id":584,"sortIndex":23,"researcher":22,"roles":585,"affiliations":586,"properties":592},"8114bda2-b834-4a49-980b-2a40a8b601b0",[98],[587],{"id":22,"sortIndex":23,"affiliation":588,"properties":22},{"id":562,"createTime":563,"updateTime":563,"relativeEntities":589,"slug":22,"properties":590,"entityType":108,"verifyStatus":21,"verifyTime":22,"verifyNote":22,"syncStatus":21,"languages":22,"translateLanguages":22,"viewCount":23},[],{"title":591},{"VI":567},{"title":593},{"VI":594},"Ma Jianglei",{"url":554,"publisher":596,"properties":611},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":597,"slug":10,"properties":598,"entityType":20,"verifyStatus":21,"verifyTime":22,"verifyNote":22,"syncStatus":21,"languages":22,"translateLanguages":22,"viewCount":23,"subjectFields":603,"manageAffiliations":604,"indexDatabases":605,"url":22,"thumbnailPath":22,"statistic":606,"gsStatistic":22,"type":62,"analyzePriority":22},[],{"issn":599,"eissn":600,"title":601,"url":602},{"VOID":13},{"VOID":15},{"EN":17},{"VOID":19},[],[],[],{"impactFactor":23,"impactFactorByYear":607,"i10Index":23,"i10IndexLast5Year":23,"totalPublication":29,"totalPublicationByYear":608,"totalCitation":23,"totalCitationByYear":609,"totalCitationPerPublication":23,"totalCitationPerPublicationByYear":610,"hindexLast5Year":23,"hindex":23},{},{"1980":31,"1981":32,"1982":33,"1983":34,"1984":35,"1985":36,"1986":37,"1987":38,"1988":39,"1989":40,"1990":41,"1991":42,"1992":43,"1993":44,"1994":45,"1995":46,"1996":47,"1997":48,"1998":49,"1999":50,"2000":51,"2001":52,"2002":53,"2003":46,"2004":54,"2005":55,"2006":56,"2007":57,"2008":58,"2009":53,"2010":59},{},{},{"volume":612,"pages":614},{"VOID":613},"13",{"VOID":615},"933-938","1992-06-01",1992,{"id":619,"createTime":620,"updateTime":621,"relativeEntities":622,"slug":623,"properties":624,"entityType":86,"verifyStatus":87,"verifyTime":621,"verifyNote":89,"syncStatus":21,"languages":22,"translateLanguages":22,"viewCount":23,"primaryUrl":633,"fullTextUrl":22,"authors":634,"publicationType":137,"publisherRelationship":662,"citationCount":22,"citationInfo":22,"publishDate":683,"publishYear":684,"citationAnalyzeStatus":21,"lastCitationAnalyze":22,"indexDatabases":22,"openAccess":22,"references":22,"isForceReanalyzing":161},"0740e215-2e1d-4ed4-ac40-8fc92eab727f","2024-01-10T23:02:43.112+00:00","2025-02-11T23:58:50.762+00:00",[],"Perturbation-Analysis-of-Dielectric-Grating-Antenna-with-LHM-Substrate",{"references":625,"abstract":627,"title":629,"doi":631},{"VOID":626},"A. Alú, and N. Engheta, Guided modes in a waveguide filled with a pair of single-negative (SNG), double-negative (DNG), and\u002For doublepositive (DPS) layers, IEEE Trans. Microwave Theory Tech., vol MTT-52 (no.1) 199–210 (2004), Jan.\nP. Baccarelli, et al., Fundamental Modal Properties of Surface Waves on Metamaterial Grounded Slabs, IEEE Trans. Microwave Theory Tech., vol MTT-53 (no. 4) (2005), April.\nI. W. Shadrivov, A. A. Sukhorukov, and Y. S. Kivshar, Guided modes in negative refractive index waveguides, Phys. Rev. E, Stat. Phys. Plasmas Fluids Relat. Interdiscip. Topics. 67 (no. 5) 057 602–057 602 (2003), May.\nS. Xu, and X. Wu, Improved perturbation analysis of dielectric grating antenna, Int. J. Infrared Millim. Waves. 10 (No.2) 213–230 (1989).\nH. Dong, and T. X.Wu, Analysis of discontinuities in double negative (DNG) slab waveguides, Microw. Opt. Technol. Lett. 39 (No.6) (2003), Dec.\nM. Huang, and S. Xu, Scattering and radiation characteristics of step discontinuity in a double negative (DNG) slab waveguide operating in the evanescent surface mode, Microw. Opt. Technol. Lett. 48 (no.6) 1085–1088 (2006).",{"EN":628},"A dielectric grating leaky wave antenna with a substrate consisted of left handed material (LHM) is presented in this paper, the case where the n = −1 space harmonic of TM mode radiating into the space is carefully investigated through the improved perturbation analysis, which tremendously simplifies the analysis procedure with good calculation accuracy and brings considerable physical insight into the overall behavior of the dielectric grating antenna. It has been found that the new leaky wave antenna is of larger leakage constant than that of the traditional antenna with substrate of the right handed material (RHM). As a result the dimension of the antenna could be largely reduced, which is of practical significance for some applications. Extensive numerical results of the radiation characteristics are given to establish useful guidelines for the design of the new grating antenna.",{"EN":630},"Perturbation Analysis of Dielectric Grating Antenna with LHM Substrate",{"VOID":632},"10.1007\u002Fs10762-006-9182-8","https:\u002F\u002Flink.springer.com\u002Farticle\u002F10.1007\u002Fs10762-006-9182-8",[635,650],{"id":636,"sortIndex":23,"researcher":22,"roles":637,"affiliations":638,"properties":647},"07c43252-f37c-4d77-adbf-c237caa70c39",[98],[639],{"id":22,"sortIndex":23,"affiliation":640,"properties":22},{"id":641,"createTime":642,"updateTime":642,"relativeEntities":643,"slug":22,"properties":644,"entityType":108,"verifyStatus":21,"verifyTime":22,"verifyNote":22,"syncStatus":21,"languages":22,"translateLanguages":22,"viewCount":23},"618803ac-4fac-4d8f-94ef-0ab4938cc77c","2023-12-31T20:20:48.793+00:00",[],{"title":645},{"VI":646},"Department of Electronics Engineering and Information Science, University of Science & Technology of China, Hefei, People’s Republic of China",{"title":648},{"VI":649},"Yongmei Pan",{"id":651,"sortIndex":96,"researcher":22,"roles":652,"affiliations":653,"properties":659},"6956b1f2-06b4-4d9d-b92f-d2fc8635212d",[98],[654],{"id":22,"sortIndex":23,"affiliation":655,"properties":22},{"id":641,"createTime":642,"updateTime":642,"relativeEntities":656,"slug":22,"properties":657,"entityType":108,"verifyStatus":21,"verifyTime":22,"verifyNote":22,"syncStatus":21,"languages":22,"translateLanguages":22,"viewCount":23},[],{"title":658},{"VI":646},{"title":660},{"VI":661},"Shanjia Xu",{"url":633,"publisher":663,"properties":678},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":664,"slug":10,"properties":665,"entityType":20,"verifyStatus":21,"verifyTime":22,"verifyNote":22,"syncStatus":21,"languages":22,"translateLanguages":22,"viewCount":23,"subjectFields":670,"manageAffiliations":671,"indexDatabases":672,"url":22,"thumbnailPath":22,"statistic":673,"gsStatistic":22,"type":62,"analyzePriority":22},[],{"issn":666,"eissn":667,"title":668,"url":669},{"VOID":13},{"VOID":15},{"EN":17},{"VOID":19},[],[],[],{"impactFactor":23,"impactFactorByYear":674,"i10Index":23,"i10IndexLast5Year":23,"totalPublication":29,"totalPublicationByYear":675,"totalCitation":23,"totalCitationByYear":676,"totalCitationPerPublication":23,"totalCitationPerPublicationByYear":677,"hindexLast5Year":23,"hindex":23},{},{"1980":31,"1981":32,"1982":33,"1983":34,"1984":35,"1985":36,"1986":37,"1987":38,"1988":39,"1989":40,"1990":41,"1991":42,"1992":43,"1993":44,"1994":45,"1995":46,"1996":47,"1997":48,"1998":49,"1999":50,"2000":51,"2001":52,"2002":53,"2003":46,"2004":54,"2005":55,"2006":56,"2007":57,"2008":58,"2009":53,"2010":59},{},{},{"volume":679,"pages":681},{"VOID":680},"28",{"VOID":682},"33-42","2007-01-30",2007,{"id":686,"createTime":687,"updateTime":688,"relativeEntities":689,"slug":690,"properties":691,"entityType":86,"verifyStatus":87,"verifyTime":688,"verifyNote":89,"syncStatus":21,"languages":22,"translateLanguages":22,"viewCount":23,"primaryUrl":700,"fullTextUrl":22,"authors":701,"publicationType":137,"publisherRelationship":768,"citationCount":22,"citationInfo":22,"publishDate":789,"publishYear":790,"citationAnalyzeStatus":21,"lastCitationAnalyze":22,"indexDatabases":22,"openAccess":22,"references":22,"isForceReanalyzing":161},"8842b28a-0308-4559-9b70-f7440391dfa5","2024-01-27T23:20:59.141+00:00","2025-01-14T23:58:40.009+00:00",[],"Millimeter-Wave-over-Fiber-Systems-Using-Hybrid-OCDM-WDM-Transmission",{"references":692,"abstract":694,"title":696,"doi":698},{"VOID":693},"J. J. O'Reilly, P. M. Lane, J. Attard, and R. Griffin, \"Broadband wireless systems and networks: an enabling role for radio-over-fibre\", Phil. Trans. R. Soc. Lond. A, Vol. 358, pp. 2297-2308, Aug. 2000.\nT. E. Stern and K. Bala\", Multiwavelength Optical Networks A Layered Approach. Reading: Addisson-Wesley, 1999.\nK. Kitayama, H. Sotobayashi, and N. Wada, \"Optical code division multiplexing OCDM and its applications to photonics networks\", IEICE Trans. Fundamentals, Vol. E82-A, pp. 2616-2626, Dec. 1999.\nP. Smulders, \"Exploiting the 60 GHz band for local wireless multimedia access: prospects and future directions\", IEEE Communications Magazine, Vol. 40, pp. 140-147, Jan. 2002.\nMMAC02. http:\u002F\u002Fwww.arib.or.jp\u002Fmmac\u002Fe\u002Fwhat.htm, 2002.\nIEEE Std 802.16.2-2001: Coexistence of Fixed Broadband Wireless Access Systems. The Institute of Electrical and Electronic Engineers, Inc., Sept. 2001.\nP. J. Legg and P. Crichton, \"ACTS MEDIAN: a wireless LAN supporting ATM at 155 Mb\u002Fs\", in IEE Colloquium on ATM Traffic in the Personal Mobile Communications Environment, (London, UK), pp. 1-5, Feb. 1997.\nK. Kitayama, A. Stohr, T. Kuri, R. Heinzelmann, D. Jager, and Y. Takahashi, \"An approach to single optical component antenna base stations for broad-band millimeter-wave fiber-radio access systems\", IEEE Transactions Microwave Theory and Techniques, Vol. 48, pp. 2588-2595, Dec. 2000.\nT. Kuri, K. I. Kitayama, A. Stöhr, and Y. Ogawa, \"Fiber-optic millimeter-wave downlink system using 60 GHz-band external modulation\", Journal of Lightwave Technology, Vol. 17, pp. 799-806, May 1999.\nA. Stok and E. Sargent, \"The role of optical CDMA in access networks\", IEEE Communications Magazine, Vol. 40, pp. 83-87, Sept. 2002.\nH. Sotoboyashi, W. Chujo, and K. Kitayama, \"1.6-b\u002Fs\u002FHz 6.4-Tb\u002Fs QPSK-OCDM\u002FWDM (4 OCDM x 40 WDM x 40 Gb\u002Fs) transmission experiment using optical hard thresholding\", IEEE Photonics Technology Letters, Vol. 14, pp. 555-557, Apr. 2002.\nR. A. Griffin, P. M. Lane, and J. J. O'Reilly, \"Radio-over-fiber distribution using an optical millimeter-wave\u002FDWDM overlay\", in Technical digest of the Optical Fiber Communications Conference '99, Vol. 2, (San Diego, USA), pp. 70-71, Feb. 1999.\nG. H. Smith, D. Novak, and C. Lim, \"A millimeter-wave full-duplex fiber-radio star-tree architecture incorporating WDM and SCM\", IEEE Photonics Technology Letters, Vol. 10, pp. 1650-1652, Nov. 1998.\nE. Mutafungwa and S. J. Halme, \"Analysis of the blocking performance of hybrid OCDM-WDM transport networks\", Microwave and Optical Technology Letters, Vol. 34, pp. 61-68, July 2002.\nP. C. Teh, M. Ibsen, P. Petropoulos, and D. J. Richardson, \"A comparative study of the performance of seven-and 63-chip optical code-division multiple-access encoders and decoders based on superstructured fiber bragg gratings\", Journal of Lightwave Technology, Vol. 19, pp. 1352-1365, Sept. 2001.\nA. Lowery, O. Lenzmann, I. Koltchanov, R. Moosburger, R. Freund, A. Richter, S. Georgi, D. Breuer, and H. Hamster, \"Multiple signal representation simulation of photonic devices, system and networks\", IEEE Journal of Selected Topics in Quantum Electronics, Vol. 6, pp. 282-296, Mar. 2000.\nW. Huang, M. H. M. Nizam, I. Andonovic, and M. Tur, \"Coherent optical CDMA (OCDMA) systems used for high-capacity optical fiber networks-system description, OTDMA comparison, and OCDMA\u002FWDMA networking\", Journal of Lightwave Technology, Vol. 18, pp. 765-778, June 2000.\nJ. T. K. Tang and K. B. Letau[ef, \"Optical CDMA communication systems with multiuser and blind detection\", IEEE Transactions on Communications, Vol. 20, pp. 1211-1217, Aug. 1999.\nH. M. H. Shalaby, \"Chip-level detection in optical code division multiple access\", Journal of Lightwave Technology, Vol. 16, pp. 1077-1087, June 1998.\nP. Parolari, L. Marazzia, M. Connen, and M. Martinelli, \"SOA based all-optical threshold\", in Proceedings of Conference on Laser and Electro-Optics, (San Francisco, USA), pp. 309-310, May 2000.\nT. Ohtsuki, \"Performance analysis of direct-detection optical asynchronous CDMA systems with double-optical hard-limiters\", Journal of Lightwave Technology, Vol. 15, pp. 452-457, Mar. 1997.\nM. R. Dale and R. M. Gagliardi, \"Channel coding for asynchronous fiberoptic CDMA communications\", IEEE Transactions on Communications, Vol. 43, pp. 2485-2492, Sept. 1995.\nJ. Y. Kim and H. V. Poor, \"Turbo-coded packet transmission for an optical CDMA network\", Journal of Lightwave Technology, Vol. 18, pp. 1905-1916, Dec. 2000.\nH. X. C. Feng, A. J. Mendez, J. P. Heritage, and W. J. Lennon, \"Effects of optical impau[rments on 2.5 Gb\u002Fs optical CDMA transmission\", Optical Express, Vol. 7, no. 1, pp. 2-9, 2000.\nR. Ramaswami and S. N. Kumar, Optical networks: a practical perspective. San Francisco: Kaufmann, 2002.\nA. Hodžic, B. Konrad, and K. Petermann, \"Alternative modulation formats in nx40 gb\u002Fs WDM standard fiber RZ-transmission systems\", Journal of Lightwave Technology, Vol. 20, pp. 598-607, Apr. 2002.",{"EN":695},"In this paper, we propose and simulate 2 OCDM × 4 WDM transmission system for a millimeter-wave (60 GHz) over fiber system to be used in broadband wireless access networks (BWANs). The general system setup is devised and the necessary building blocks identified. Results gathered (for a 155 Mbit\u002Fs per user system) under worst case parameter specifications and settings suggest indicate that system performance is severely limited by optical multiuser interference (OMUI) penalties. Several methods to reduce the OMUI limitations are described. These methods should ensure that this transmission scheme possible wavelength-reuse option for future MMW BWANs.",{"EN":697},"Millimeter-Wave over Fiber Systems Using Hybrid OCDM\u002FWDM Transmission",{"VOID":699},"10.1023\u002FA:1024640200525","https:\u002F\u002Flink.springer.com\u002Farticle\u002F10.1023\u002FA:1024640200525",[702,717,732,744,756],{"id":703,"sortIndex":126,"researcher":22,"roles":704,"affiliations":705,"properties":714},"783b40b4-11ba-46b3-a319-2affa25b5dfe",[98],[706],{"id":22,"sortIndex":23,"affiliation":707,"properties":22},{"id":708,"createTime":709,"updateTime":709,"relativeEntities":710,"slug":22,"properties":711,"entityType":108,"verifyStatus":21,"verifyTime":22,"verifyNote":22,"syncStatus":21,"languages":22,"translateLanguages":22,"viewCount":23},"6fd9388d-3bac-41cd-ab20-1dff5ac86b3e","2024-01-27T23:20:59.177+00:00",[],{"title":712},{"VI":713},"GITS, Waseda University, Shinjuku-Ku, Tokyo, Japan",{"title":715},{"VI":716},"Kamugisha Kazaura",{"id":718,"sortIndex":23,"researcher":22,"roles":719,"affiliations":720,"properties":729},"08c83102-afcd-4f5a-a9c3-c8030ad12903",[98],[721],{"id":22,"sortIndex":23,"affiliation":722,"properties":22},{"id":723,"createTime":724,"updateTime":724,"relativeEntities":725,"slug":22,"properties":726,"entityType":108,"verifyStatus":21,"verifyTime":22,"verifyNote":22,"syncStatus":21,"languages":22,"translateLanguages":22,"viewCount":23},"cba983f0-0179-4fcd-a090-099597c44462","2024-01-27T23:20:59.164+00:00",[],{"title":727},{"VI":728},"Communications Laboratory, Helsinki University of Technology, HUT, Finland",{"title":730},{"VI":731},"Edward Mutafungwa",{"id":733,"sortIndex":234,"researcher":22,"roles":734,"affiliations":735,"properties":741},"4f25c013-69ad-4128-9e82-40bcb5f1cbd2",[98],[736],{"id":22,"sortIndex":23,"affiliation":737,"properties":22},{"id":708,"createTime":709,"updateTime":709,"relativeEntities":738,"slug":22,"properties":739,"entityType":108,"verifyStatus":21,"verifyTime":22,"verifyNote":22,"syncStatus":21,"languages":22,"translateLanguages":22,"viewCount":23},[],{"title":740},{"VI":713},{"title":742},{"VI":743},"Mitsuji Matsumoto",{"id":745,"sortIndex":182,"researcher":22,"roles":746,"affiliations":747,"properties":753},"046273dd-b60a-4646-a22c-6c3c2dc7599b",[98],[748],{"id":22,"sortIndex":23,"affiliation":749,"properties":22},{"id":708,"createTime":709,"updateTime":709,"relativeEntities":750,"slug":22,"properties":751,"entityType":108,"verifyStatus":21,"verifyTime":22,"verifyNote":22,"syncStatus":21,"languages":22,"translateLanguages":22,"viewCount":23},[],{"title":752},{"VI":713},{"title":754},{"VI":755},"Toshihiko Wakahara",{"id":757,"sortIndex":96,"researcher":22,"roles":758,"affiliations":759,"properties":765},"90bc5937-827b-4537-80e4-36f07ed3d330",[98],[760],{"id":22,"sortIndex":23,"affiliation":761,"properties":22},{"id":723,"createTime":724,"updateTime":724,"relativeEntities":762,"slug":22,"properties":763,"entityType":108,"verifyStatus":21,"verifyTime":22,"verifyNote":22,"syncStatus":21,"languages":22,"translateLanguages":22,"viewCount":23},[],{"title":764},{"VI":728},{"title":766},{"VI":767},"Seppo J. Halme",{"url":700,"publisher":769,"properties":784},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":770,"slug":10,"properties":771,"entityType":20,"verifyStatus":21,"verifyTime":22,"verifyNote":22,"syncStatus":21,"languages":22,"translateLanguages":22,"viewCount":23,"subjectFields":776,"manageAffiliations":777,"indexDatabases":778,"url":22,"thumbnailPath":22,"statistic":779,"gsStatistic":22,"type":62,"analyzePriority":22},[],{"issn":772,"eissn":773,"title":774,"url":775},{"VOID":13},{"VOID":15},{"EN":17},{"VOID":19},[],[],[],{"impactFactor":23,"impactFactorByYear":780,"i10Index":23,"i10IndexLast5Year":23,"totalPublication":29,"totalPublicationByYear":781,"totalCitation":23,"totalCitationByYear":782,"totalCitationPerPublication":23,"totalCitationPerPublicationByYear":783,"hindexLast5Year":23,"hindex":23},{},{"1980":31,"1981":32,"1982":33,"1983":34,"1984":35,"1985":36,"1986":37,"1987":38,"1988":39,"1989":40,"1990":41,"1991":42,"1992":43,"1993":44,"1994":45,"1995":46,"1996":47,"1997":48,"1998":49,"1999":50,"2000":51,"2001":52,"2002":53,"2003":46,"2004":54,"2005":55,"2006":56,"2007":57,"2008":58,"2009":53,"2010":59},{},{},{"volume":785,"pages":787},{"VOID":786},"24",{"VOID":788},"1113-1126","2003-07-01",2003,{"id":792,"createTime":793,"updateTime":794,"relativeEntities":795,"slug":796,"properties":797,"entityType":86,"verifyStatus":87,"verifyTime":794,"verifyNote":89,"syncStatus":21,"languages":22,"translateLanguages":22,"viewCount":23,"primaryUrl":806,"fullTextUrl":22,"authors":807,"publicationType":137,"publisherRelationship":847,"citationCount":22,"citationInfo":22,"publishDate":868,"publishYear":470,"citationAnalyzeStatus":21,"lastCitationAnalyze":22,"indexDatabases":22,"openAccess":22,"references":22,"isForceReanalyzing":161},"fa49fa61-923d-430c-9015-be96af83ca26","2024-02-09T13:12:43.343+00:00","2024-12-26T23:58:11.522+00:00",[],"A-New-Piecewise-Approach-for-Nonuniformity-Correction-in-IRFPA",{"references":798,"abstract":800,"title":802,"doi":804},{"VOID":799},"A. F. Milton, F. R. Barone. Influence of nonuniformity on infrared focal plane array performance. Optical Engineering, 1985, Vol.24 (5): 855–862.\nD.L. Perry and E.L. Dereniak, Linear theory of nonuniformity correction in infrared staring sensors. Optical Engineering, 1993, Vol.32 (8): 1854–1859.\nD. A. Scribner, K. A. Sarkady, J. T. Caulfield, et al. Nonuniformity correction for staring IR focal plane arrays using scene-based techniques. Infrared Detectors and Focal Plane Arrays, Proc. SPIE, 1990, 1308: 224–233.\nR. C. Hardie, M. M. Hayat, E. Armstrong, et al, Scene-based nonuniformity correction using video sequences and registration. Applied Optics, 2000, Vol.39 (8): 1241–1250.\nJ. G. Harris and Y. M. Chiang. Nonuniformity Correction of Infrared Image Sequences Using the Constant-Statistics Constraint. IEEE Trans. Image Processing, 1999, Vol.8 (8): 1148–1151.\nJohn. H. Mathews. Numerical methods for mathematics, science, and engineering. New Jersey: Prentice Hall, Englewood cliffs, 1992\nM. Schulz, L. Caldwell. Nonuniformity correction and correctability of infrared focal plane arrays. Infrared Physics & Technology, 1995, Vol.36: 763–777.\nJ.M. Mooney, F.D. Shepherd, W.S. Ewing, et al. Responsivity nonuniformity limited performance of infrared staring cameras. Optical Engineering, 1989, Vol.28 (11): 1151–1161.\nWilliam L. Wolfe, George J. Zissis. The infrared handbook. Chapter 1, Radiation Theory, (1978) 1–9\nTian Li-zhan, Li Qing-hui, Liu Shang-qian. A new nonuniform correction algorithm, Journal of applied optics, 2000, Vol.21 (2): 4–6 (in Chinese)\nGB\u002FT 17444–1998. The technical norms for measurement and test of characteristic parameters of infrared focal plane arrays. 1998, (in Chinese).",{"EN":801},"Considering different detector in IRFPA has different nonlinear response characteristic, a novel piecewise linear connection scheme for nonuniformity correction in IRFPA is proposed in this paper. Comparing to the widely used piecewise linear correction, the proposed scheme tries to find the n-segment piecewise straight-line which strives for going near (not always through) all available calibration points, rather than just passes through some n + 1 calibration points. Since each detector's output is corrected to the expected correction value as near as possible, the new scheme can achieve better NUC performance within the whole calibration range than that of the old one. The comparison experiment with simulated data and real IRFPA infrared data shows that the performance of this approach is more perfect than that of the old piecewise linear algorithm.",{"EN":803},"A New Piecewise Approach for Nonuniformity Correction in IRFPA",{"VOID":805},"10.1023\u002FB:IJIM.0000030794.99960.dc","https:\u002F\u002Flink.springer.com\u002Farticle\u002F10.1023\u002FB:IJIM.0000030794.99960.dc",[808,823,835],{"id":809,"sortIndex":23,"researcher":22,"roles":810,"affiliations":811,"properties":820},"0ab01fc5-316d-4b46-9508-6bf301932379",[98],[812],{"id":22,"sortIndex":23,"affiliation":813,"properties":22},{"id":814,"createTime":815,"updateTime":815,"relativeEntities":816,"slug":22,"properties":817,"entityType":108,"verifyStatus":21,"verifyTime":22,"verifyNote":22,"syncStatus":21,"languages":22,"translateLanguages":22,"viewCount":23},"4e5d0e3a-1b1f-4fc2-8dba-64001e230ca2","2024-02-09T13:12:43.524+00:00",[],{"title":818},{"VI":819},"Laboratory of State Education Committee for Image Information Processing and Intelligence Control, Institute for Pattern Recognition and Artificial Intelligence, Huazhong University of Science and Technology, Wuhan, Hubei, China",{"title":821},{"VI":822},"Yan Shi",{"id":824,"sortIndex":126,"researcher":22,"roles":825,"affiliations":826,"properties":832},"7c7422c3-77b4-46bf-87c3-c2a228bc2b7a",[98],[827],{"id":22,"sortIndex":23,"affiliation":828,"properties":22},{"id":814,"createTime":815,"updateTime":815,"relativeEntities":829,"slug":22,"properties":830,"entityType":108,"verifyStatus":21,"verifyTime":22,"verifyNote":22,"syncStatus":21,"languages":22,"translateLanguages":22,"viewCount":23},[],{"title":831},{"VI":819},{"title":833},{"VI":834},"Zhiguo Cao",{"id":836,"sortIndex":96,"researcher":22,"roles":837,"affiliations":838,"properties":844},"5c5e8ed1-25d8-43f3-ab8c-3dc5a4c97831",[98],[839],{"id":22,"sortIndex":23,"affiliation":840,"properties":22},{"id":814,"createTime":815,"updateTime":815,"relativeEntities":841,"slug":22,"properties":842,"entityType":108,"verifyStatus":21,"verifyTime":22,"verifyNote":22,"syncStatus":21,"languages":22,"translateLanguages":22,"viewCount":23},[],{"title":843},{"VI":819},{"title":845},{"VI":846},"Tianxu Zhang",{"url":806,"publisher":848,"properties":863},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":849,"slug":10,"properties":850,"entityType":20,"verifyStatus":21,"verifyTime":22,"verifyNote":22,"syncStatus":21,"languages":22,"translateLanguages":22,"viewCount":23,"subjectFields":855,"manageAffiliations":856,"indexDatabases":857,"url":22,"thumbnailPath":22,"statistic":858,"gsStatistic":22,"type":62,"analyzePriority":22},[],{"issn":851,"eissn":852,"title":853,"url":854},{"VOID":13},{"VOID":15},{"EN":17},{"VOID":19},[],[],[],{"impactFactor":23,"impactFactorByYear":859,"i10Index":23,"i10IndexLast5Year":23,"totalPublication":29,"totalPublicationByYear":860,"totalCitation":23,"totalCitationByYear":861,"totalCitationPerPublication":23,"totalCitationPerPublicationByYear":862,"hindexLast5Year":23,"hindex":23},{},{"1980":31,"1981":32,"1982":33,"1983":34,"1984":35,"1985":36,"1986":37,"1987":38,"1988":39,"1989":40,"1990":41,"1991":42,"1992":43,"1993":44,"1994":45,"1995":46,"1996":47,"1997":48,"1998":49,"1999":50,"2000":51,"2001":52,"2002":53,"2003":46,"2004":54,"2005":55,"2006":56,"2007":57,"2008":58,"2009":53,"2010":59},{},{},{"volume":864,"pages":866},{"VOID":865},"25",{"VOID":867},"959-972","2004-06-01",{"id":870,"createTime":871,"updateTime":871,"relativeEntities":872,"slug":22,"properties":873,"entityType":86,"verifyStatus":21,"verifyTime":22,"verifyNote":22,"syncStatus":21,"languages":22,"translateLanguages":22,"viewCount":23,"primaryUrl":882,"fullTextUrl":22,"authors":883,"publicationType":137,"publisherRelationship":911,"citationCount":22,"citationInfo":22,"publishDate":932,"publishYear":933,"citationAnalyzeStatus":21,"lastCitationAnalyze":22,"indexDatabases":22,"openAccess":22,"references":22,"isForceReanalyzing":161},"26fe0d64-6725-42ed-ba4b-1b82e3445ce3","2023-12-29T23:58:01.321+00:00",[],{"references":874,"abstract":876,"title":878,"doi":880},{"VOID":875},"M. E. Hines, “Reciprocal and Nonreciprocal Modes of Propagation in Ferrite Stripline and Microstrip Devices”, IEEE Trans. Microwave Theory Tech., Vol. MTT-19, No. 5, pp. 442–451 May, 1971.\nD. M. Bolle and S. H. Talisa, “The Edge-Guided Mode Nonreciprocal Phase Shifter”, IEEE Trans. Microwave Theory Tech., Vol. MTT-27, No. 11, pp. 878–882, November, 1979.\nK. Araki and T. Itoh, “Nonreciprocal Effects in an Open Dielectric Waveguide with Grating Structures”, IEEE Int. Microwave Symp. Digest, pp. 319–321, June, 1980.",{"EN":877},"Open dielectric waveguides with a gyrotropic layer have been studied with a view to find structures in which the nonreciprocity in the propagation constant is maximized. A prediction based on a qualitative analysis and numerical studies for confirming the theory are included.",{"EN":879},"Multilayered open dielectric waveguide with a gyrotropic layer",{"VOID":881},"10.1007\u002FBF01007465","https:\u002F\u002Flink.springer.com\u002Farticle\u002F10.1007\u002FBF01007465",[884,899],{"id":885,"sortIndex":96,"researcher":22,"roles":886,"affiliations":887,"properties":896},"4b3ac132-ad43-4b60-b656-ff32447c806b",[98],[888],{"id":22,"sortIndex":23,"affiliation":889,"properties":22},{"id":890,"createTime":891,"updateTime":891,"relativeEntities":892,"slug":22,"properties":893,"entityType":108,"verifyStatus":21,"verifyTime":22,"verifyNote":22,"syncStatus":21,"languages":22,"translateLanguages":22,"viewCount":23},"f5ddaff2-464a-4b04-a6b2-8dbc39e5c75e","2023-12-29T23:58:01.333+00:00",[],{"title":894},{"VI":895},"Department of Electrical Engineering, The University of Texas at Austin, Austin",{"title":897},{"VI":898},"Tatsuo Itoh",{"id":900,"sortIndex":23,"researcher":22,"roles":901,"affiliations":902,"properties":908},"03ebb413-768e-44b8-be32-dc91a5e4d683",[98],[903],{"id":22,"sortIndex":23,"affiliation":904,"properties":22},{"id":890,"createTime":891,"updateTime":891,"relativeEntities":905,"slug":22,"properties":906,"entityType":108,"verifyStatus":21,"verifyTime":22,"verifyNote":22,"syncStatus":21,"languages":22,"translateLanguages":22,"viewCount":23},[],{"title":907},{"VI":895},{"title":909},{"VI":910},"Ikuo Awai",{"url":882,"publisher":912,"properties":927},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":913,"slug":10,"properties":914,"entityType":20,"verifyStatus":21,"verifyTime":22,"verifyNote":22,"syncStatus":21,"languages":22,"translateLanguages":22,"viewCount":23,"subjectFields":919,"manageAffiliations":920,"indexDatabases":921,"url":22,"thumbnailPath":22,"statistic":922,"gsStatistic":22,"type":62,"analyzePriority":22},[],{"issn":915,"eissn":916,"title":917,"url":918},{"VOID":13},{"VOID":15},{"EN":17},{"VOID":19},[],[],[],{"impactFactor":23,"impactFactorByYear":923,"i10Index":23,"i10IndexLast5Year":23,"totalPublication":29,"totalPublicationByYear":924,"totalCitation":23,"totalCitationByYear":925,"totalCitationPerPublication":23,"totalCitationPerPublicationByYear":926,"hindexLast5Year":23,"hindex":23},{},{"1980":31,"1981":32,"1982":33,"1983":34,"1984":35,"1985":36,"1986":37,"1987":38,"1988":39,"1989":40,"1990":41,"1991":42,"1992":43,"1993":44,"1994":45,"1995":46,"1996":47,"1997":48,"1998":49,"1999":50,"2000":51,"2001":52,"2002":53,"2003":46,"2004":54,"2005":55,"2006":56,"2007":57,"2008":58,"2009":53,"2010":59},{},{},{"volume":928,"pages":930},{"VOID":929},"2",{"VOID":931},"1-14","1981-01-01",1981,{"id":935,"createTime":936,"updateTime":937,"relativeEntities":938,"slug":939,"properties":940,"entityType":86,"verifyStatus":87,"verifyTime":949,"verifyNote":89,"syncStatus":21,"languages":22,"translateLanguages":22,"viewCount":23,"primaryUrl":950,"fullTextUrl":22,"authors":951,"publicationType":137,"publisherRelationship":969,"citationCount":22,"citationInfo":22,"publishDate":990,"publishYear":991,"citationAnalyzeStatus":21,"lastCitationAnalyze":22,"indexDatabases":22,"openAccess":22,"references":22,"isForceReanalyzing":161},"19954c5a-989d-46fb-9cbf-421ee41f4ddb","2023-12-12T18:03:09.631+00:00","2025-01-16T23:57:31.237+00:00",[],"Quasi-optical-grids-with-thin-rectangular-patch-aperture-elements",{"references":941,"abstract":943,"title":945,"doi":947},{"VOID":942},"R. Ulrich, et al, “Tunable submillimeter interferometers of the Fabry-Perot type,”IEEE Trans., vol. MTT-11, pp. 363–371, Sept. 1963.\nR. Ulrich, “Far-Infrared properties of metallic mesh and its complementary structure,”Infrared Physics, vol. 7, pp.37–55, 1967.\nR. Ulrich, “Interference filters for the Far Infrared,”Applied Optics, vol. 7, no. 10, pp. 1987–1996, Oct. 1968.\nP. Vogel and L. Genzel, “Transmission and reflection of metallic mesh in the Far Infrared,”Infrared Physics, vol. 4, pp. 257–262, 1964.\nJ.E. Rogers, et al., “Thermal protective shield for antenna reflectors”, US Patent 4,479,131, Oct. 23, 1984.\nN. Nathrath, et al., “Laser etching — a new method for reflector grid manufacturing,” Proc. ESA Symp., Noordwijk (NL), Mar. 1990.\nC.C. Chen, “Scattering by a two-dimensional periodic array of conducting plates,”IEEE trans., vol. AP-18, pp.660–665, Sept. 1970.\nC.C. Chen, “Transmission through a conducting screen perforated periodically with apertures,”IEEE Trans., vol. MTT-18, pp. 627–632, Sept. 1970.\nS.W. Lee, “Scattering by dielectric loaded screen,”IEEE Trans., vol. AP-19,pp.656–665, 1971.\nS.W. Lee, et al, “Convergence of numerical solutions of iris-type discontinuity problem,”IEEE Trans., vol. MTT-19, pp. 528–535, June 1971.\nS.W. Lee. et al, “Simple formulas for transmission through periodic metal grids or plates,”IEEE Trans., vol. AP-30, pp.904–909, Sept. 1982.\nB.A. Munk, et al, “Reflection properties of periodic surfaces of loaded dipoles,”IEEE Trans., vol. AP-19, pp. 612–617, Sept. 1971.\nR.J. Luebbers and B.A. Munk, “Some effects of dielectric loading on periodic slot array,”IEEE Trans., vol. AP-26, pp. 536–542, July 1978.\nJ.P. Montgomery, “Scattering by an infinite periodic array of thin conductors on a dielectric sheet,”IEEE Trans., vol. AP-23, pp. 70–75, Jan. 1975.\nC.H. Tsao, “Spectral-domain approach for analyzing scattering from frequency selective surfaces,” Ph.D. Thesis, Univ. of Illinois, Urbana, IL 1981.\nC.H. Tsao and R. Mittra, “A spectral-iteration approach for analyzing scattering from frequency selective surfaces,”IEEE Trans., vol. AP-30, pp.303–308, March 1982.\nR. Mittra, C. Chan and T. Cwik, “Techniques for analyzing frequency selective surfaces-a review,”IEEE Proceedings, vol. 76, no. 12, Dec. 1988, p. 1593.\nB. J. Rubin and H.L. Bertoni, “Reflection from a periodically perforated plane using a subsectional current approximation,”IEEE Trans., vol. AP-31, pp.829–836, 1983.\nC.G. Christodoulou and J.F. Kauffman, “On the electromagnetic scattering from infinite rectangular grids with finite conductivity,”IEEE Trans., vol. AP-34, pp. 144–154, Feb. 1986.\nR.C. Compton and D.B. Rutledge, “Approximation techniques for planar periodic structures,”IEEE Trans., vol. MTT-33, pp. 1083–1088, Oct. 1985.\nJ.H. Richmond, “On the edge mode in the theory of TM scattering by a strip or strip grating,”IEEE Trans., vol. AP-28, pp.883–887, Nov. 1980.\nT.K. Wu, “Fast convergent integral equation solution of strip gratings on dielectric substrate,”IEEE Trans., vol. AP-35, pp. 205–207, Feb. 1987.\nT.K. Wu, “Frequency selective surfaces with rectangular\u002Fsquare elements,” 1985 IEEE Int. Symp. Ant. and Prop. Digest, Vancouver, Canada, June 1985, pp. 659–662.\nC.C. Chen, “Diffraction of electromagnetic waves by a conducting screen perforated periodically with circular holes,”IEEE Trans., vol. MTT-19, pp.475–481, May 1971.",{"EN":944},"Theoretical analysis is presented for an efficient and accurate performance evaluation of quasi-optical grids comprised of thin rectangular patch\u002Faperture elements with\u002Fwithout a dielectric substrate\u002Fsuperstrate. The convergence rate of this efficient technique is improved by an order of magnitude with the approximate edge conditions incorporated in the basis functions of the integral equation solution. Also presented are the interesting applications of this efficient analytical technique to the design and performance evaluation of the coupling grids and beam splitters in the optical systems as well as thermal protection sunshields used in the communication systems of satellites and spacecrafts.",{"EN":946},"Quasi-optical grids with thin rectangular patch\u002Faperture elements",{"VOID":948},"10.1007\u002FBF02084577","2025-01-16T23:57:31.236+00:00","http:\u002F\u002Flink.springer.com\u002F10.1007\u002FBF02084577",[952],{"id":953,"sortIndex":23,"researcher":22,"roles":954,"affiliations":955,"properties":966},"40182c08-337f-44ca-86a0-8f1af9096978",[98],[956],{"id":22,"sortIndex":23,"affiliation":957,"properties":22},{"id":958,"createTime":959,"updateTime":960,"relativeEntities":961,"slug":962,"properties":963,"entityType":108,"verifyStatus":21,"verifyTime":22,"verifyNote":22,"syncStatus":21,"languages":22,"translateLanguages":22,"viewCount":23},"85b87b1a-6bfb-4e0f-94df-9393662a080f","2023-12-29T15:04:39.456+00:00","2024-10-14T18:25:57.916+00:00",[],"Jet-Propulsion-Laboratory-California-Institute-of-Technology-Pasadena",{"title":964},{"VI":965},"Jet Propulsion Laboratory, California Institute of Technology, Pasadena",{"title":967},{"VI":968},"Te -Kao Wu",{"url":950,"publisher":970,"properties":985},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":971,"slug":10,"properties":972,"entityType":20,"verifyStatus":21,"verifyTime":22,"verifyNote":22,"syncStatus":21,"languages":22,"translateLanguages":22,"viewCount":23,"subjectFields":977,"manageAffiliations":978,"indexDatabases":979,"url":22,"thumbnailPath":22,"statistic":980,"gsStatistic":22,"type":62,"analyzePriority":22},[],{"issn":973,"eissn":974,"title":975,"url":976},{"VOID":13},{"VOID":15},{"EN":17},{"VOID":19},[],[],[],{"impactFactor":23,"impactFactorByYear":981,"i10Index":23,"i10IndexLast5Year":23,"totalPublication":29,"totalPublicationByYear":982,"totalCitation":23,"totalCitationByYear":983,"totalCitationPerPublication":23,"totalCitationPerPublicationByYear":984,"hindexLast5Year":23,"hindex":23},{},{"1980":31,"1981":32,"1982":33,"1983":34,"1984":35,"1985":36,"1986":37,"1987":38,"1988":39,"1989":40,"1990":41,"1991":42,"1992":43,"1993":44,"1994":45,"1995":46,"1996":47,"1997":48,"1998":49,"1999":50,"2000":51,"2001":52,"2002":53,"2003":46,"2004":54,"2005":55,"2006":56,"2007":57,"2008":58,"2009":53,"2010":59},{},{},{"volume":986,"pages":988},{"VOID":987},"14",{"VOID":989},"1017-1033","1993-05-01",1993]