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Terahertz multi-metal-wire hybrid-cladding hollow waveguide for refractive index sensing

Terahertz multi-metal-wire hybrid-cladding hollow waveguide for refractive index sensing
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摘要 We propose a design of terahertz refractive index sensing based on the multi-metal-wire(MMW) hybrid-cladding hollow waveguide. The proposed terahertz hybrid-cladding hollow waveguide comprises one air core in the center surrounding MMW surrounded dielectric. The central air core is used for filling lossless measurands and transmitting terahertz light. In particular, the refractive index sensing is realized by measuring the mode field area(MFA) variation of radially polarized mode. The modal effective refractive index, mode field intensity distribution, and mode field area properties responding to the measurand refractive indexes for different operating frequencies and structure dimensions are investigated, respectively.Simulations show that the proposed terahertz refractive index sensor can realize easily the measurement of the measurand refractive index. Meanwhile, the effects of operating frequency and structure parameters on sensitivity and measurement accuracy are also studied. In view of the trade-off between sensitivity and measurement accuracy, the reasonable choice of the operating frequency and structure parameters can optimize appropriately the sensitivity and measurement accuracy, and the sensitivity can reach approximately 0.585 mm^2/RIU(RIU is short for refraction index units) with the proper frequency and structure parameter. We propose a design of terahertz refractive index sensing based on the multi-metal-wire(MMW) hybrid-cladding hollow waveguide. The proposed terahertz hybrid-cladding hollow waveguide comprises one air core in the center surrounding MMW surrounded dielectric. The central air core is used for filling lossless measurands and transmitting terahertz light. In particular, the refractive index sensing is realized by measuring the mode field area(MFA) variation of radially polarized mode. The modal effective refractive index, mode field intensity distribution, and mode field area properties responding to the measurand refractive indexes for different operating frequencies and structure dimensions are investigated, respectively.Simulations show that the proposed terahertz refractive index sensor can realize easily the measurement of the measurand refractive index. Meanwhile, the effects of operating frequency and structure parameters on sensitivity and measurement accuracy are also studied. In view of the trade-off between sensitivity and measurement accuracy, the reasonable choice of the operating frequency and structure parameters can optimize appropriately the sensitivity and measurement accuracy, and the sensitivity can reach approximately 0.585 mm^2/RIU(RIU is short for refraction index units) with the proper frequency and structure parameter.
机构地区 College of Automation
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2016年第2期558-562,共5页 中国物理B(英文版)
基金 Project supported by the National Natural Science Foundation of China(Grant No.51309059)
关键词 TERAHERTZ waveguide sensor hybrid-cladding hollow structure terahertz, waveguide sensor, hybrid-cladding hollow structure
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  • 1Debus C and Bolivar P H 2007 Appl. Phys. Lett. 91 184102.
  • 2Klatt G, Nagel M, Dekorsy T and Bartels A 2009 Electron. Lett. 45 310.
  • 3Sizov F 2010 Opto-Electron. Rev. 18 10.
  • 4Yao J Q, Chi N, Yang P F, Cui H X, Wang J L, Li J S, Xu D G and Ding X 2009 Chin. J. Lasers 36 2213 (in Chinese).
  • 5Kleine-Ostmann T and Nagatsuma 2011 J. Infrared Millim. Terahz. Waves 32 143.
  • 6Song H J, Ajito K, Muramoto Y, Wakatuski A, Nagatsuma T and Kukutsu N 2012 Electron. Lett. 48 953.
  • 7Mittleman D M, Gupta M, Neelamani R, Baraniuk G, Rudd J V and Koch M 1999 Appl. Phys. B 68 1085.
  • 8Amanti M I, Scalari G, Beck M and Faist J 2012 Opt. Express 20 2772.
  • 9Watts C M, Shrekenhamer D, Montoya J, Lipworth G, Hunt J, Sleas- man T, Krishna S, Smith D R and Padila W J 2014 Nat. Photon. 8 605.
  • 10Chen D R and Chen H B 2010 Opt. Express 18 3762.

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