Design of a High-Resolution Metal–Insulator–Metal Plasmonic Refractive Index Sensor Based on a Ring-Shaped Si Resonator
Tóm tắt
Từ khóa
Tài liệu tham khảo
Khani S, Danaie M, Rezaei P (2018) Realization of single-mode plasmonic bandpass filters using improved nanodisk resonators. Opt Commun 420:147–156
Khani S, Danaie M, Rezaei P (2019) Design of a single-mode plasmonic bandpass filter using a hexagonal resonator coupled to graded-stub waveguides. Plasmonics 14(1):53–62
Nozhat N, Granpayeh N (2011) Analysis of the plasmonic power splitter and MUX/DEMUX suitable for photonic integrated circuits. Opt Commun 284(13):3449–3455
Rakhshani MR, Mansouri-Birjandi MA (2016) Dual wavelength demultiplexer based on metal–insulator–metal plasmonic circular ring resonators. J Mod Opt 63(11):1078–1086
Danaie M, Geravand A (2018) Design of low-cross-talk metal–insulator–metal plasmonic waveguide intersections based on proposed cross-shaped resonators. J Nanophotonics 12(4):046009
Khani S, Danaie M, Rezaei P (2018) Double and triple-wavelength plasmonic demultiplexers based on improved circular nanodisk resonators. Opt Eng 57(10):107102
Taheri AN, Kaatuzian H (2014) Design and simulation of a nanoscale electro-plasmonic 1× 2 switch based on asymmetric metal–insulator–metal stub filters. Appl Opt 53(28):6546–6553
Taheri AN, Kaatuzian H (2015) Numerical investigation of a nano-scale electro-plasmonic switch based on metal-insulator-metal stub filter. Opt Quant Electron 47(2):159–168
Ghadrdan M, Mansouri-Birjandi MA (2018) Design and implementation of optical switches based on nonlinear plasmonic ring resonators: circular, square and octagon. Photonics Nanostruct Fundam Appl 29:15–21
Ghadrdan M, Mansouri-Birjandi MA (2017) Low-threshold photonic crystal all-optical switch using plasmonic nanowires placed in nonlinear resonator structure. J Nanophotonics 11(3):036017
Lee Y, Kim SJ, Park H, Lee B (2017) Metamaterials and metasurfaces for sensor applications. Sensors 17(8):1726
Livani AM, Kaatuzian H (2015) Design and simulation of an electrically pumped Schottky-junction-based plasmonic amplifier. Appl Opt 54(9):2164–2173
Livani AM, Kaatuzian H (2015) Analysis and simulation of nonlinearity and effects of spontaneous emission in Schottky–junction–based plasmonic amplifiers. Appl Opt 54(19):6103–6110
Danaie M, Kiani B (2018) Design of a label-free photonic crystal refractive index sensor for biomedical applications. Photonics Nanostruct Fundam Appl 31:89–98
Dinish US, Balasundaram G, Chang YT, Olivo M (2014) Sensitive multiplex detection of serological liver cancer biomarkers using SERS-active photonic crystal fiber probe. J Biophotonics 7(11–12):956–965
Farmani A (2019) Three-dimensional FDTD analysis of a nanostructured plasmonic sensor in the nearinfrared range. JOSA B 36(2):401–407
Sharma AK (2013) Plasmonic biosensor for detection of hemoglobin concentration in human blood: design considerations. J Appl Phys 114(4):044701
Ebrahimy MN, Moghaddam AB, Andalib A, Naziri M, Ronagh N (2015) Nanoscale biosensor based on silicon photonic cavity for home healthcare diagnostic application. Int J Nanosci 14(05n06):1550026
Iadicicco A, Cusano A, Cutolo A, Bernini R, Giordano M (2004) Thinned fiber Bragg gratings as high sensitivity refractive index sensor. IEEE Photon Technol Lett 16(4):1149–1151
Liang W, Huang Y, Xu Y, Lee RK, Yariv A (2005) Highly sensitive fiber Bragg grating refractive index sensors. Appl Phys Lett 86(15):151122
Danaee E, Geravand A, Danaie M (2019) Wide-band low cross-talk photonic crystal waveguide intersections using self-collimation phenomenon. Opt Commun 431:216–228
Danaie M, Geravand A, Mohammadi S (2018) Photonic crystal double-coupled cavity waveguides and their application in design of slow-light delay lines. Photonics Nanostruct Fundam Appl 28:61–69
Geravand A, Danaie M, Mohammadi S (2019) All-optical photonic crystal memory cells based on cavities with a dual-argument hysteresis feature. Opt Commun 430:323–335
Anker JN, Hall WP, Lyandres O, Shah NC, Zhao J, Van Duyne RP (2010) Biosensing with plasmonic nanosensors. In Nanoscience and Technology: A Collection of Reviews from Nature Journals, pp 308–319
Danaie M, Attari AR, Mirsalehi MM, Naseh S (2008) Optimization of two dimensional photonic crystal waveguides for TM polarization. Opt Appl 38(4):643–655
Dideban A, Habibiyan H, Ghafoorifard H (2017) Photonic crystal channel drop filter based on ring-shaped defects for DWDM systems. Physica E 87:77–83
Malmir K, Habibiyan H, Ghafoorifard H (2016) An ultrasensitive optical label-free polymeric biosensor based on concentric triple microring resonators with a central microdisk resonator. Opt Commun 365:150–156
Alipour-Banaei H, Mehdizadeh F, Hassangholizadeh-Kashtiban M (2014) A new proposal for PCRR-based channel drop filter using elliptical rings. Physica E 56:211–215
Salimzadeh S, Alipour-Banaei H (2018) A novel proposal for all optical 3 to 8 decoder based on nonlinear ring resonators. J Mod Opt 65(17):2017–2024
Moradi M, Danaie M, Orouji AA (2018) Design and analysis of an optical full-adder based on nonlinear photonic crystal ring resonators. Optik 172:127–136
Chorsi HT, Lee Y, Alù A, Zhang JX (2017) Tunable plasmonic substrates with ultrahigh Q-factor resonances. Sci Rep 7(1):15985
Chen Z, Li H, Zhan S, Li B, He Z, Xu H, Zheng M (2016) Tunable high quality factor in two multimode plasmonic stubs waveguide. Sci Rep 6:24446
Danaie M, Kaatuzian H (2010) Design of a photonic crystal differential phase comparator for a Mach–Zehnder switch. J Opt 13(1):015504
Xiao X, Xu H, Li X, Li Z, Chu T, Yu Y, Yu J (2013) High-speed, low-loss silicon Mach–Zehnder modulators with doping optimization. Opt Express 21(4):4116–4125
Dionne JA, Sweatlock LA, Atwater HA, Polman A (2006) Plasmon slot waveguides: towards chip-scale propagation with subwavelength-scale localization. Phys Rev B 73(3):035407
Pannipitiya A, Rukhlenko ID, Premaratne M, Hattori HT, Agrawal GP (2010) Improved transmission model for metal-dielectric-metal plasmonic waveguides with stub structure. Opt Express 18(6):6191–6204
Aspnes DE, Palik ED (1985) Handbook of optical constants of solids. Academic, Orlando, ISBN, 125444206(9780125444200), p 89
Kwon SH (2013) Deep subwavelength-scale metal–insulator–metal plasmonic disk cavities for refractive index sensors. IEEE Photonics J 5(1):4800107–4800107
Bahramipanah M, Abrishamian MS, Mirtaheri SA, Liu JM (2014) Ultracompact plasmonic loop–stub notch filter and sensor. Sensors Actuators B Chem 194:311–318
Ni B, Chen XY, Xiong DY, Liu H, Hua GH, Chang JH, Zhang JH, Zhou H (2015) Infrared plasmonic refractive index-sensitive nanosensor based on electromagnetically induced transparency of waveguide resonator systems. Opt Quant Electron 47(6):1339–1346
Xie YY, Huang YX, Zhao WL, Xu WH, He C (2015) A novel plasmonic sensor based on metal–insulator–metal waveguide with side-coupled hexagonal cavity. IEEE Photonics J 7(2):1–12
Yan SB, Luo L, Xue CY, Zhang ZD (2015) A refractive index sensor based on a metal-insulator-metal waveguide-coupled ring resonator. Sensors 15(11):29183–29191
Zafar R, Salim M (2015) Enhanced figure of merit in Fano resonance-based plasmonic refractive index sensor. IEEE Sensors J 15(11):6313–6317
Zou S, Wang F, Liang R, Xiao L, Hu M (2015) A nanoscale refractive index sensor based on asymmetric plasmonic waveguide with a ring resonator: a review. IEEE Sensors J 15(2):646–650
Chen L, Liu Y, Yu Z, Wu D, Ma R, Zhang Y, Ye H (2016) Numerical analysis of a near-infrared plasmonic refractive index sensor with high figure of merit based on a fillet cavity. Opt Express 24(9):9975–9983
Chen F, Yao D (2016) Realizing of plasmon Fano resonance with a metal nanowall moving along MIM waveguide. Opt Commun 369:72–78
Rakhshani MR, Mansouri-Birjandi MA (2016) High-sensitivity plasmonic sensor based on metal–insulator–metal waveguide and hexagonal-ring cavity. IEEE Sensors J 16(9):3041–3046
Wu T, Cao W (2016) A multifunction filter based on plasmonic waveguide with double-nanodisk-shaped resonators. Optik 127(20):8976–8982
Zhang Z, Luo L, Xue C, Zhang W, Yan S (2016) Fano resonance based on metal-insulator-metal waveguide-coupled double rectangular cavities for plasmonic nanosensors. Sensors 16(5):642
Zhang X, Shao M, Zeng X (2016) High quality plasmonic sensors based on Fano resonances created through cascading double asymmetric cavities. Sensors 16(10):1730
Akhavan A, Ghafoorifard H, Abdolhosseini S, Habibiyan H (2017) Plasmon-induced transparency based on a triangle cavity coupled with an ellipse-ring resonator. Appl Opt 56(34):9556–9563
Mishra AK, Mishra SK, Singh AP (2018) Giant infrared sensitivity of surface plasmon resonance-based refractive index sensor. Plasmonics 13(4):1183–1190
Rakhshani MR, Mansouri-Birjandi MA (2017) Utilizing the metallic nano-rods in hexagonal configuration to enhance sensitivity of the plasmonic racetrack resonator in sensing application. Plasmonics 12(4):999–1006
Rakhshani MR, Mansouri-Birjandi MA (2017) High sensitivity plasmonic refractive index sensing and its application for human blood group identification. Sensors Actuators B Chem 249:168–176
Tang Y, Zhang Z, Wang R, Hai Z, Xue C, Zhang W, Yan S (2017) Refractive index sensor based on Fano resonances in metal-insulator-metal waveguides coupled with resonators. Sensors 17(4):784
Wu C, Ding H, Huang T, Wu X, Chen B, Ren K, Fu S (2018) Plasmon-induced transparency and refractive index sensing in side-coupled stub-hexagon resonators. Plasmonics 13(1):251–257
Akhavan A, Ghafoorifard H, Abdolhosseini S, Habibiyan H (2018) Metal–insulator–metal waveguide-coupled asymmetric resonators for sensing and slow light applications. IET Optoelectron 12:220–227
Ghorbani S, Dashti MA, Jabbari M (2018) Plasmonic nano-sensor based on metal-dielectric-metal waveguide with the octagonal cavity ring. Laser Phys 28(6):066208
Rakhshani MR, Mansouri-Birjandi MA (2018) Engineering hexagonal array of nanoholes for high sensitivity biosensor and application for human blood group detection. IEEE Trans Nanotechnol 17(3):475–481
Rashed AR, Gudulluoglu B, Yun HW, Habib M, Boyaci IH, Hong SH, Ozbay E, Caglayan H (2018) Highly-sensitive refractive index sensing by near-infrared metatronic nanocircuits. Sci Rep 8(1):11457
Yi X, Tian J, Yang R (2018) Tunable Fano resonance in plasmonic MDM waveguide with a square type split-ring resonator. Optik 171:139–148
Zhang Z, Yang J, He X, Zhang J, Huang J, Chen D, Han Y (2018) Plasmonic refractive index sensor with high figure of merit based on concentric-rings resonator. Sensors 18(1):116