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Auger cascades are found to play an important role: most of the high energy electrons are produced via secondary Auger processes in the last step of a cascade.",{"EN":82},"Coincidence measurements between electrons from projectile autoionization and target ions in specific charge states",{"VOID":84},"[\"32554835288926562\"]",{"VOID":86},"M. Mack, J.H. Nijland, P.v.d. Straten, A. Niehaus, R. Morgenstern, Phys.Rev. A39, 3846 (1989)\nA. Niehaus, J.Phys.B19, 2925 (1986)",{"VOID":88},"10.1007\u002FBF01426326","PUBLICATION","VERIFIED","2024-06-24T18:08:28.693+00:00","Auto Verify","https:\u002F\u002Flink.springer.com\u002Farticle\u002F10.1007\u002FBF01426326",[95,111,125],{"id":96,"sortIndex":21,"researcher":20,"roles":97,"affiliations":99,"properties":108},"58d39464-6fe1-4b28-9159-24a223453e49",[98],"AUTHOR",[100],{"id":101,"sortIndex":21,"affiliation":102,"properties":20},"75b75443-31d7-4896-9efe-9ab32e37ee9d",{"id":101,"createTime":20,"updateTime":20,"relativeEntities":103,"slug":20,"properties":104,"entityType":20,"verifyStatus":20,"verifyTime":20,"verifyNote":20,"languages":20,"translateLanguages":20,"viewCount":20,"url":20,"parentIds":107,"statistic":20},[],{"title":105},{"VI":106},"Kernfysisch Versneller Instituut, Rijksuniversiteit Groningen, Groningen, The Netherlands",[],{"title":109},{"VI":110},"J. H. 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Where it is possible to make comparison with experimental data the results are in reasonable qualitative accord with recent multiphoton ionization observations.",{"EN":184},"Electric quadrupole transition rates for even parity levels of Si I",{"VOID":186},"[\"18241183707529042493\"]",{"VOID":188},"Ioannidou-Phili, A., Christodoulides, A.A.: Z. Phys. D — Atoms, Molecules and Clusters16, 271 (1990)\nBebb, H.B., Gold, A.: Phys. Rev.143, 1 (1966)\nGontier, Y., Trahin, M.: Phys. Rev. A4, 1896 (1971)\nCrance, M.: J. Phys. B17, L635 (1984)\nLambropoulos, P., Tang, X.: J. Opt. Soc. Am. B4, 821 (1987)\nShore, B.W., Menzel, D.H.: Principles of atomic spectra. New York: Wiley 1968\nMalville, J.M., Berger, R.A.: Planet. Space Sci.13, 1131 (1965)\nGarstang, R.H.: Mon. Not. R. Astron. Soc.111, 115 (1951)\nShortley, G.H.: Phys. Rev.57, 225 (1940)\nCowan, R.D.: The theory of atomic structure and spectra. Berkeley, Ca: University of California Press 1981\nKohn, W., Sham, L.J.: Phys. Rev.140, A1133 (1965)\nMartin, W.C., Zalubas, R.: J. Phys. Chem. Ref. Data12, 323 (1983)\nNussbaumer, H.: Ap. J.166, 411 (1971)\nBagus, P.S., Moser, C.M.: J. Phys. B2, 1214 (1969)",{"VOID":190},"10.1007\u002FBF01426611","2024-08-30T23:42:22.219+00:00","https:\u002F\u002Flink.springer.com\u002Farticle\u002F10.1007\u002FBF01426611",[194],{"id":195,"sortIndex":21,"researcher":20,"roles":196,"affiliations":197,"properties":206},"ba02e184-d3e1-4c0c-a64c-718ee60f49d1",[98],[198],{"id":199,"sortIndex":21,"affiliation":200,"properties":20},"8660d16c-069d-4f8c-929e-aa97b662c340",{"id":199,"createTime":20,"updateTime":20,"relativeEntities":201,"slug":20,"properties":202,"entityType":20,"verifyStatus":20,"verifyTime":20,"verifyNote":20,"languages":20,"translateLanguages":20,"viewCount":20,"url":20,"parentIds":205,"statistic":20},[],{"title":203},{"VI":204},"Physics Department Royal Holloway and Bedford New College, University of London, Egham, Surrey, United Kingdom",[],{"title":207},{"VI":208},"M. Wilson",{"url":192,"publisher":210,"properties":230},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":211,"slug":10,"properties":212,"entityType":18,"verifyStatus":19,"verifyTime":20,"verifyNote":20,"languages":20,"translateLanguages":20,"viewCount":21,"subjectFields":216,"manageAffiliations":217,"indexDatabases":218,"url":20,"thumbnailPath":20,"statistic":225,"gsStatistic":20,"type":20,"analyzePriority":20},[],{"issn":213,"title":214,"eissn":215},{"VOID":13},{"EN":15},{"VOID":17},[],[],[219],{"id":26,"indexDatabase":220,"url":37,"indexYears":38,"academicFieldIds":20,"indexDatabaseRanking":39},{"id":28,"createTime":20,"updateTime":20,"relativeEntities":221,"label":222,"description":223,"key":34,"publicationTags":224,"standard":20},[],{"EN":31,"VI":31},{"EN":31,"VI":33},[36],{"impactFactor":21,"impactFactorByYear":226,"i10Index":42,"i10IndexLast5Year":21,"totalPublication":43,"totalPublicationByYear":227,"totalCitation":57,"totalCitationByYear":228,"totalCitationPerPublication":62,"totalCitationPerPublicationByYear":229,"hindexLast5Year":67,"hindex":67},{},{"1986":45,"1987":46,"1988":47,"1989":48,"1990":49,"1991":50,"1992":51,"1993":52,"1994":46,"1995":53,"1996":54,"1997":55,"2014":56},{"1990":59,"1996":60,"1997":61},{"1990":64,"1996":65,"1997":66},{"pages":231,"volume":233},{"VOID":232},"7-10",{"VOID":165},{"total":21,"publishYear":167,"statisticByYear":235},{},"DONE_ANALYZE_CITATION","2026-07-27T16:55:24.951+00:00",[39],{"id":240,"createTime":241,"updateTime":242,"relativeEntities":243,"slug":244,"properties":245,"entityType":89,"verifyStatus":90,"verifyTime":256,"verifyNote":92,"languages":20,"translateLanguages":20,"viewCount":21,"primaryUrl":257,"fullTextUrl":20,"authors":258,"publicationType":139,"publisherRelationship":289,"citationCount":21,"citationInfo":315,"publishDate":318,"publishYear":316,"citationAnalyzeStatus":19,"lastCitationAnalyze":319,"indexDatabases":320,"openAccess":20,"references":20,"isForceReanalyzing":173},"b58a3e19-e905-4c8e-80bf-eea178cb21a2","2024-02-06T09:10:40.406+00:00","2026-07-23T14:39:30.244+00:00",[],"Scalar-and-quadrupolar-intensity-contributions-in-two-photon-hyperfine-structure-transitions-in-europium",{"abstract":246,"title":248,"gsPaper":250,"references":252,"doi":254},{"EN":247},"Two-photon transitions from the Eu I ground state 4f\n7 6s\n2\na\n8\nS\n7\u002F2 to odd levels with alsoJ=7\u002F2 in the energy range of 34,000 – 36,700 cm−1 were analysed due to their scalar and quadrupolar contributions. Their ratioR (g, e) were determined experimentally. In most cases the quadrupole contributions are dominant, i.e. 0\u003CR (g, e)\n                  exp\n                \u003C20·10−3. In the two-photon transition to the level 4f\n7 5d\n2\n8\nF\n7\u002F2 the ratio is remarkably strong:R (g, e)\n                  exp\n                =134 (4)·10−3. A theoretical estimation ofR (g, e) is not yet satisfying, due to strong configuration mixing in Eu.",{"EN":249},"Scalar and quadrupolar intensity contributions in two-photon hyperfine structure transitions in europium",{"VOID":251},"[\"9730561218769551861\"]",{"VOID":253},"Kronfeldt, H.-D., Weber, D.-J.: Phys. Rev. A43, 4837 (1991)\nKronfeldt, H.-D., Weber, D.-J., Dembczyński, J., Stachowska, E.: Phys. Rev. A44, 5737 (1991)\nGrynberg, G., Cagnac, B.: Rep. Prog. Phys.40, 791 (1977)\nGiacobino, E., Biraben, F., Grynberg, G., Cagnac, B.: J. Phys. (Paris)38, 623 (1977)\nGrynberg, G., Biraben, F., Giacobino, E., Cagnac, B.: J. Phys. (Paris)38, 629 (1977)\nWeber, D.-J.: Thesis D83, Berlin 1989\nWyart, J.F.: Phys. Scr.32, 58 (1985) (Private communication 1983)",{"VOID":255},"10.1007\u002FBF01425744","2024-05-12T22:37:14.609+00:00","https:\u002F\u002Flink.springer.com\u002Farticle\u002F10.1007\u002FBF01425744",[259,274],{"id":260,"sortIndex":21,"researcher":20,"roles":261,"affiliations":262,"properties":271},"5309f360-7c5f-473c-a473-cec58052e87a",[98],[263],{"id":264,"sortIndex":21,"affiliation":265,"properties":20},"c1f7f255-4799-4447-8b98-2d00f8241ab0",{"id":264,"createTime":20,"updateTime":20,"relativeEntities":266,"slug":20,"properties":267,"entityType":20,"verifyStatus":20,"verifyTime":20,"verifyNote":20,"languages":20,"translateLanguages":20,"viewCount":20,"url":20,"parentIds":270,"statistic":20},[],{"title":268},{"VI":269},"Optisches Institut, Technische Universität Berlin, Berlin 12, Federal Republic of Germany",[],{"title":272},{"VI":273},"H. -D. Kronfeldt",{"id":275,"sortIndex":113,"researcher":20,"roles":276,"affiliations":277,"properties":284},"1142204d-025d-4dd7-94a3-03db03d1b4be",[98],[278],{"id":264,"sortIndex":21,"affiliation":279,"properties":20},{"id":264,"createTime":20,"updateTime":20,"relativeEntities":280,"slug":20,"properties":281,"entityType":20,"verifyStatus":20,"verifyTime":20,"verifyNote":20,"languages":20,"translateLanguages":20,"viewCount":20,"url":20,"parentIds":283,"statistic":20},[],{"title":282},{"VI":269},[],{"title":285,"gsAuthor":287},{"VI":286},"I. 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Here it is used to calculate second-order energy corrections and to construct approximate Brueckner orbitals for Cs and Tl in a relativistic framework. These orbitals, which often account for a large part of the correlation effects, are then used to evaluate the hyperfine structure and electric dipole transition matrix elements for a few low-lying states. The correlation effects were combined with the RPA diagrams, which account for the response of the orbitals to the external perturbation, and the results are compared with other calculations and with experiment. For Cs, the results are in good agreement with earlier work, whereas for the more complicated system Tl we find significantly larger contributions from the modification of the valence orbitals to approximate Brueckner orbitals.",{"EN":331},"Relativistic correlation effects on the hyperfine structure and electric dipole transitions in Cs and Tl",{"VOID":333},"[]",{"VOID":335},"Mårtensson, A.M.: J. Phys. B12, 3993 (1979)\nLindgren, I., Salomonson, S.: Phys. Scr.21, 335 (1980)\nLindgren, I., Morrison, J.: Atomic many-body theory, Springer Series in Chemical Physics, Vol. 13. Berlin, Heidelberg, New York: Springer 1982\nSalomonson, S., Öster, P.: Phys. Rev. A40, 5559, 5548 (1989)\nSalomonson, S., Öster, P.: Phys. Rev. A (submitted)\nSandars, P.G.H.: J. Phys. B10, 2983 (1977)\nMårtensson, A.-M., Henley, E.M., Wilets, L.: Phys. Rev. A24, 308 (1981)\nDzuba, V.A., Flambaum, V.V., Sushkov, O.P.: J. Phys. B17, 1953 (1984)\nDzubam, V.A., Flambaum, V.V., Silvestrov, P.G., Sushkov, O.P.: J. Phys. B18, 597 (1985)\nMårtensson-Pendrill, A.-M.: J. Phys. (Paris)46, 1949 (1985)\nMårtensson-Pendrill, A.-M.: Phys. Rev. Lett.54, 1153 (1985)\nJohnson, W.R., Guo, D.S., Idrees, M., Sapirstein, J.: Phys. Rev. A32, 2093 (1985); Phys. Rev. A34, 1043 (1986)\nDzuba, V.A., Flambaum, V.V., Silvestrov, P.G., Sushkov, O.P.: J. Phys. B20, 1399 (1987)\nDzuba, V.A., Flambaum, V.V., Silvestrov, P.G., Sushkov, O.P.: J. Phys. B20, 3297 (1987)\nDzuba, V.A., Flambaum, V.V., Silvestrov, P.G., Sushkov, O.P.: Phys. Scr.35, 69 (1987)\nHartley, H.C., Sandars, P.G.H.: J. Phys. B (submitted)\nAmusia, M.Ya., Cherepkov, N.A.: Case Stud. At. Phys.5, 47 (1975);\nJohnson, W.R., Lin, C.D., Cheng, K.T., Lee, C.M.: Phys. Scr.21, 409 (1980)\nGarpman, S., Lindgren, I., Lindgren, J., Morrison, J.: Z. Phys. A — Atoms and Nuclei276, 167 (1976)\nDzuba, V.A., Flambaum, V.V., Silvestrov, P.G., Sushkov, O.P.: Phys. Lett. A118, 177 (1987)\nHeully, J.-L., Mårtensson-Pendrill, A.-M.: Phys. Scr.27, 291 (1983)\nHeully, J.-L., Lindgren, I., Lindroth, E., Mårtensson-Pendrill, A.-M.: Phys. Rev. A33, 4426 (1986)\nKelly, H.P.: Phys. Rev.131, 684 (1963); Phys. Rev.136, B896 (1964)\nLee, T., Dutta, N.C., Das, T.P.: Phys. Rev. A1, 995 (1970);\nChang, E.S., Pu, R.T., Das, T.P.: Phys. Rev.174, 1 (1968)\nVajed-Samii, M., Ray, S.N., Das, T.P., Andriessen, J.: Phys. Rev. A20, 1787 (1979); Phys. Rev. A24, 1204 (1981);\nVajed-Samii, M., Andriessen, J., Das, B.P., Ray, S.N., Lee, T., Das, T.P.: Phys. Rev. Lett.48, 1330 (1982); J. Phys. B15, L379 (1982);\nAhmad, S., Andriessen, J., Das, T.P.: Phys. Rev. A27, 2790 (1983)\nDzuba, V.A., Flambaum, V.V., Sushkov, O.P.: J. Phys. B16, 715 (1983)\nDzuba, V.A., Flambaum, V.V., Silvestrov, P.G., Sushkov, O.P.: Phys. Lett. A131, 461 (1988)\nDzuba, V.A., Flambaum, V.V., Sushkov, O.P.: Novosibirsk Preprint 88–164; Phys. Lett. A140, 493 (1989);\nDzuba, V.A., Flambaum, V.V., Silvestrov, P.G., Sushkov, O.P.: Proceedings from the Workshop on Relativistic, Quantum Electrodynamic and Weak Interaction Effects in Atoms Jan–June 1988. Johnson, W.R., Mohr, P., Sucher, J. (eds.), p. 254–264. APS Proceedings189, 1989\nDzuba, V.A., Flambaum, V.V., Silvestrov, P.G., Sushkov, O.P.: Novosibirsk Preprint 89–110; Phys. Lett. A142, 373 (1989)\nGarpman, S., Lindgren, I., Lindgren, J., Morrison, J.: Phys. Rev. A11, 758 (1975)\nMårtensson-Pendrill, A.-M.: Numerical determination of nonrelativistic and relativistic pair correlation. In: Numerical determination of the electric structure of atoms, diatomic and polyatomic systems. Defranceschi, M., Delhalle, J. (eds.) Proceedings of NATO-ASI Versailles, April 1988. Dordrecht: Kluwer 1989\nLindroth, E.: Phys. Scr.36, 485 (1987); Phys. Rev. A37, 316 (1988)\nLindroth, E., Heully, J.-L., Lindgren, I., Mårtensson-Pendrill, A.-M.: J. Phys. B20, 1679 (1987)\nJohnson, W.R., Sapirstein, J.: Phys. Rev. Lett.57, 1126 (1986);\nJohnson, W.R., Blundell, S., Sapirstein, J.: Phys. Rev. A37, 307, 1395 (1988)\nLindgren, I., Lindgren, J., Mårtensson, A.-M.: Z. Phys. A — Atoms and Nuclei279, 113 (1976)\nJohnson, W.R., Sapirstein, J., Blundell, S.J.: J. Phys. B22, 2341 (1989)\nLindgren, I.: Nucl. Instrum. Methods B31, 102 (1988); Aspects of many-body effects in molecules and extended systems. Lecture Notes in Chemistry, Vol. 50. Mukherjee, D. (ed.). Berlin, Heidelberg, New York: Springer 1989\nBlundell, S.A., Sapirstein, J., Johnson, W.R.: Phys. Rev. A38, 4961 (1988)\nMoore, C.E.: 1 Atomic energy levels. NBS Ref. Data Ser., NBS Circ. No 35 (U.S.G.P.O., Washington, D.C., 1971) Vol I–III\nJohnson, W.R., Idrees, M., Sapirstein, J.: Phys. Rev. A35, 3220 (1987)\nShabanova, L.N., Monakov, Yu.M., Khlustalov, A.M.: Opt. Spectrosk.47, 3 (1979);\nWatts, P.N., Gilbert, S.L., Wieman, C.E.: Phys. Rev. A27, 2769 (1983)\nBouchiat, C., Piketty, C.-A.: Europhysics Lett.2, 511 (1986); Private communication from J. Guéna quoted in that work\nArimondo, E., Inguscio, M., Violino, P.: Rev. Mod. Phys.49, 31 (1977)\nLurio, A., Prodell, A.G.: Phys. Rev.101, 79 (1956)\nGould, G.: Phys. Rev.101, 1828 (1956)\nPollack, S.P., Wong, E.Y.: Am. J. Phys.39, 1388 (1971)\nFlusberg, A., Mossberg, T., Hartman, S.R.: Phys. Lett.55A, 403 (1976)\nGallagher, A., Lurio, A.: Phys. Rev.136A 87 (1964)\nJames, J.V., Wang, C.C., Chuan, G.: Phys. Rev. A32, 643 (1985)\nMårtensson-Pendrill, A.-M., Ynnermann, A.: Phys. Scr. (in print)",{"VOID":337},"10.1007\u002FBF01437174","2024-06-25T19:12:32.718+00:00","https:\u002F\u002Flink.springer.com\u002Farticle\u002F10.1007\u002FBF01437174",[341,356],{"id":342,"sortIndex":21,"researcher":20,"roles":343,"affiliations":344,"properties":353},"c956e1f7-9a0f-446e-83fa-5a611122ff86",[98],[345],{"id":346,"sortIndex":21,"affiliation":347,"properties":20},"2c929ec7-eb7f-4799-8b0f-5464cf4a70f7",{"id":346,"createTime":20,"updateTime":20,"relativeEntities":348,"slug":20,"properties":349,"entityType":20,"verifyStatus":20,"verifyTime":20,"verifyNote":20,"languages":20,"translateLanguages":20,"viewCount":20,"url":20,"parentIds":352,"statistic":20},[],{"title":350},{"VI":351},"Clarendon Laboratory, Oxford, England",[],{"title":354},{"VI":355},"A. C. 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We employ e- atom total cross sections calculated in the complex optical potential, to calculate e--molecule total cross sections in a simple and a modified Additivity Rule. Our total (elastic + inelastic) cross sections above 50 eV, fare reasonably well as compared to various experimental and theoretical data. The calculated inelastic cross sections serve as the upper limit of total ionization cross sections. Results are presented graphically from about 10 to 5000 eV.",{"EN":411},"Total cross sections of electron collisions with S atoms; H2S, OCS and SO2 molecules (Ei ≥ 50 eV)",{"VOID":413},"[\"1973176036264003119\"]",{"VOID":415},"Zecca, A., Karwasz, G., Brusa, R.S.: Phys. Rev. A 45, 2777 (1992)\nZecca, A., Karwasz, G., Brusa, R.S.: Phys. Rev. A 46, 3877 (1992)\nMarch, N., Zecca, A., Karwasz, G.P.: Z. Phys. D 32, 93 (1994)\nZecca, A., Noguerra, J.C., Karwasz, G.P., Brusa, R.S.: J. Phys. B At. Mol. Opt. Phys. 28, 477 (1995)\nDababneh, M.S., Hsieh, Y.F., Kauppila, W.E., Kwan Ch. K., Stein, T.S.: Proc. 3rd Int. Workshop on Positron\u002FElectron gas scattering: Singapore: World Scientific Abstracts, p. 251 (1985)\nSzmytkowski, Cz., Maciag, K., Karwasz, G., Filipovic, D.: J. Phys. B - At. Mol. Phys. 22, 525 (1989)\nRao, M.V.V.S., Srivastava S.K.: J. Geophys. Res. 98, 13, 137 (1993)\nOrient, O.J., Iga, I., Srivastava, S.K.: J. Chem. Phys. 80, 140 (1984); Cadez, I.M., Pejeev, V.M., Kurepa, M.V.: J. Phys D – Appl. Phys. 16, 305 (1983)\nBasner, R.S., Schmidt, M.: J. Chem. Phys. 103, 211 (1995)\nJain, A., Baluja, K.L.: Phys. Rev. A 45, 202 (1992)\nKhare, S.P., Meath, W.J.: J. Phys. B – At. Mol. Phys. 20, 2101 (1987)\nJoshipura, K.N., Patel, P.M.: Z. Phys. D 29, 269 (1994)\nJoshipura, K.N., Minaxi Vinodkumar: Pramana – J. Phys. 47, 57 (1996); Phys. Lett. A 224, 361 (1997)\nJiang, Y., Jinfeng, S., Linde, W.: Phys. Rev. A 52, 398 (1995)\nJoshipura, K.N., Patel, P.M.: J. Phys. B 29, 3925 (1996)\nHerzberg, G.: Electronic spectra of polyatomic molecules, p. 580. New York: Van Nostrand 1966\nItikawa, Y.: Phys. Rep. C 46, 117 (1978)\nJain, A., Thompson, D.G.: J. Phys. B 17, 443 (1983)\nLide, D.R. (ed.) Handbook of Chemistry and Physics. Boca Raton, Florida: CRC Press 1988\nYounger, S.M., Mark, T.D.: Electron impact ionization, vol. I, p. 1. Berlin: Springer 1985\nStaszewska, G., Schwenke, W., Thirumalai, D., Truhlar, D.G.: Phys. Rev. A 28, 2740 (1983)\nO’Connel, J.K., Lane, N.F.: Phys. Rev. A 27, 189 (1983)\nKhare, S.P., Raj, D.: J. Phys. B 12, L 351 (1979); Ind. J. Pure Appl. Phys. 20, 538 (1982)\nCollins, L.A., Norcross, D.W.: Phys. Rev. A 19, 116 (1978)\nBell, K.L., Gilbody, H.B., Hughes, J.G., Kingston, A.E., Smith, F.J.: J. Phys. Chem. Ref. Data 12, 891 (1983); Lennon, K.A., Bell, K.L., Gilbody, H.B., Hughes, J.G., Kingston, A.E., Murray, M.J., Smith, F.J.: J. Phys. Chem. Ref. 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Science College, Gujarat, India",[],{"title":449,"gsAuthor":451},{"VI":450},"Minaxi Vinodkumar",{"VOID":452},"[\"9u7r6W8AAAAJ\"]",{"url":419,"publisher":454,"properties":474},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":455,"slug":10,"properties":456,"entityType":18,"verifyStatus":19,"verifyTime":20,"verifyNote":20,"languages":20,"translateLanguages":20,"viewCount":21,"subjectFields":460,"manageAffiliations":461,"indexDatabases":462,"url":20,"thumbnailPath":20,"statistic":469,"gsStatistic":20,"type":20,"analyzePriority":20},[],{"issn":457,"title":458,"eissn":459},{"VOID":13},{"EN":15},{"VOID":17},[],[],[463],{"id":26,"indexDatabase":464,"url":37,"indexYears":38,"academicFieldIds":20,"indexDatabaseRanking":39},{"id":28,"createTime":20,"updateTime":20,"relativeEntities":465,"label":466,"description":467,"key":34,"publicationTags":468,"standard":20},[],{"EN":31,"VI":31},{"EN":31,"VI":33},[36],{"impactFactor":21,"impactFactorByYear":470,"i10Index":42,"i10IndexLast5Year":21,"totalPublication":43,"totalPublicationByYear":471,"totalCitation":57,"totalCitationByYear":472,"totalCitationPerPublication":62,"totalCitationPerPublicationByYear":473,"hindexLast5Year":67,"hindex":67},{},{"1986":45,"1987":46,"1988":47,"1989":48,"1990":49,"1991":50,"1992":51,"1993":52,"1994":46,"1995":53,"1996":54,"1997":55,"2014":56},{"1990":59,"1996":60,"1997":61},{"1990":64,"1996":65,"1997":66},{"pages":475,"volume":477},{"VOID":476},"133-137",{"VOID":478},"41","2014-03-28",2014,"2026-07-22T08:52:19.260+00:00",[],{"id":484,"createTime":485,"updateTime":486,"relativeEntities":487,"slug":488,"properties":489,"entityType":89,"verifyStatus":90,"verifyTime":500,"verifyNote":92,"languages":20,"translateLanguages":20,"viewCount":21,"primaryUrl":501,"fullTextUrl":20,"authors":502,"publicationType":139,"publisherRelationship":603,"citationCount":629,"citationInfo":630,"publishDate":633,"publishYear":631,"citationAnalyzeStatus":170,"lastCitationAnalyze":634,"indexDatabases":635,"openAccess":20,"references":20,"isForceReanalyzing":173},"db9d54db-9355-470a-811f-7937672bc729","2024-02-08T13:29:36.885+00:00","2026-07-21T13:00:00.074+00:00",[],"Investigation-of-the-hyperfine-structure-of-TaI-line-II-",{"abstract":490,"title":492,"gsPaper":494,"references":496,"doi":498},{"EN":491},"The hyperfine structure of several spectral lines of the neutral tantalum atom was investigated by means of saturated laser spectroscopy, detecting optogalvanic signals and\u002For laser induced fluorescence. From the spectra we could determine the magnetic hyperfine interaction constants A and the electric quadrupol interaction constants B of 11 levels of even parity and 13 levels of odd parity.",{"EN":493},"Investigation of the hyperfine structure of TaI-line (II)",{"VOID":495},"[\"4430335211954052241\"]",{"VOID":497},"Schmidt, T.: Z. Phys.121 63 (1943)\nKamei, T.: Phys. Rev.99 789 (1955)\nMurakawa, K.: Phys. Rev.110 393 (1958); J. Phys. Soc. Jpn.17, 891 (1962)\nBüttgenbach, S., Meisel, G.: Z. Phys.244 149 (1971)\nBürger, K.H., Büttgenbach, S., Dicke, R., Gebauer, H., Kuhnen, R., Träber, F.: Z. Phys. A298, 159 (1980)\nHarzer, R.: Dissertation, Universität Bonn (1981)\nDuquette, D.W., Doughty, D.K., Lawer, J.E.: Phys. Lett.99A, 307 (1983)\nSalih, S., Duquette, D.W., Lawer, J.E.: Phys. Rev., A27, 1193 (1983)\nLanger E.: Dissertation, Univ. d. Bw. Hamburg (1985)\nPersson, J., Berzinsh, U., Nilsson, T., Gustavsson, M.: Z. Phys. D23, 67 (1992)\nPersson, J., Berzinsh, U., Gustavsson, M., Nilsson, T.: 13th International Conference on Atomic Physics (ICAP), München 1992, Abstract A-58\nBerzinsh U., Gustavsson M., Persson J.: Z. Phys. D27, 155–158 (1993)\nWännström, A., Gough, D.S., Hannaford, P.: Z. Phys. D22, 723 (1992)\nBaier, A., Behrens, H-O., Guthöhrlein, G.H., Windholz, L.: Z. Phys. D23, 151 (1992)\nGuthöhrlein, G.H., Windholz, L.: Z. Phys. D27, 343 (1993)\nGuthöhrlein, G.H., Helmrich, G., Windholz, L.: Phys. Rev. A49, 120 (1994)\nGuthöhrlein, G.H., Keller, H.P.: Z. Phys. D17, 181 (1990)\nSchwarz, W.: Institut für Experimentalphysik der Technischen Universität Graz, Interne Berichte, Heft 11 (1989)\nHarnisch M., Berweger E.: Fitprogramm zur computerunterstützten Auswertung von HFS-Spektren Univ. BW Hamburg (1993)\nKlinkenberg, P.F.A., Berg, G.J. van den, Bosch, J.C. van den: Physica16 861 (1950)\nBerg, G.J. van den, Klinkenberg, P.F.A., Bosch, J.C. van den: Physica18 221 (1952)\nMoore, Ch.: Atomic Energy Levels. Vol. III. Natl. Bur. Stand. (U.S.) Circ. No. 467. 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