期刊文献+

回音壁模式圆盘形微谐振腔的设计及特性研究

Design and Properties of the Microdisk Resonant Cavity with Whispering Gallery Mode
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摘要 针对光通信波段,分析了标准圆盘形结构和其他三种变体结构的WGM微谐振腔,讨论了通过改变传输波导和微腔之间的间距以及改变传输波导的几何形状对耦合系数的影响,基于FDTD算法,分别计算了四种结构的耦合系数、谐振频率、模场分布及品质因数等,发现模式的匹配程度和输入波导的弯曲损耗均对品质因数有影响,而四种结构的品质因数和耦合系数的变化规律相反,故具体应用中为了达到较高的耦合效率,须在较高的品质因数与较大的耦合系数之间进行折中,经比较得到了一种输入波导弯曲的优化圆盘形结构。 A standard microdisk and three kinds of variable microdisks resonant cavity with whispering gallery mode (WGM) are presented. By controlling the distance between waveguiding and micro-disk resonant cavity, as well as changing the geometry which can influence the coupling coefficient of the waveguiding and resonant cavity, the coupling coefficients, resonant frequences, the distribution of modes, and Q- factors from mentioned four structures are calculated based on FDTD method. The degree of mode matching and the bending loss from input waveguide have influence on the Q- factors. There is opposite trend between the Q- factors of the four structures and the coupling coefficient. In order to obtain more efficient coupling efficiency, it is necessary to find a medium between the higher Q- factors and the larger coupling coefficient. Finally, an optimal microdick with curve input waveguide are obtained.
出处 《中山大学学报(自然科学版)》 CAS CSCD 北大核心 2014年第3期8-13,23,共7页 Acta Scientiarum Naturalium Universitatis Sunyatseni
基金 国家自然科学基金资助项目(10974261)
关键词 光学器件 微谐振腔 耦合系数 回音壁模式 optical devices microdisk resonant cavity coupling coefficient whispering gallery mode
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参考文献16

  • 1BRAGINSKY V B, GORODETSKY M L, ILCHENKO V S. Quality-factor and nonlinear properties of optical whis- pering gallery modes [ J ]. Phys Lett A, 1989, 137 (8) : 393 - 397.
  • 2VERNOOY D W, ILCHENKO V S, MABUCHI H ,et al. High-Q measurements of fused-silica microspheres in the near infrared[ Jl. Opt Lett, 1998, 23 (4) : 247 - 249.
  • 3CAMPILLO A J, EVERSOLE J D, LIN H B. Cavity quantum electrodynamic enhancement of stimulated emis- sion in microdroplets [ J ]. Phys Rev Lett, 1991, 67 (4) : 437 - 440.
  • 4MORAND A, ZHANG Y, MARTIN B,et al. Ultra-com- pact microdisk resonator filters on SOI substrate[J]. Opt Express,2006, 14(26): 12814 - 12821.
  • 5FRANCOIS A, KRISHNAMOORTHY S, HIMMELHAUS M. Advances in label-free optical biosensing: direct com- parison of whispering gallery mode sensors with surface Plasmon resonance [ J ]. Proc SPIE, 2008, 6862: 686211.
  • 6NOTO M, KHOSHSIMA M, KANG D, et al. Molecular weight dependence of a whispering gallery mode biosensor [J]. Appl Phys Lett, 2005, 87(22) : 223901.
  • 7HILL S C, BENNER R E, RUSHFORTH C K, et al. Sizing dielectric spheres and cylinders by aligning meas- ured and computed resonance locations: algorithm for multiple orders[J]. Appl Opt, 1985, 24( 15): 2380 - 2390.
  • 8QIAN S X, SNOW J B, CHANG R K. Coherent raman mixing and coherent anti-stokes raman scattering from in- dividual micrometer-size droplets[ J]. Opt Lett, 1985, 10 (10) : 499 - 501.
  • 9ILCHENKO V S, MATSKO A B, SAVCHENKOV A A, et al. High efficiency microwave and millimeter-wave e- lectro-optical modulation with whispering-gallery resona- tors[J]. Proc SPIE, 2002, 4629:158 - 163.
  • 10BORISKINA S V, SEWELL P, BENSON T M, et al. Accurate simulation of two-dimensional optical microcav- ities with uniquely solvable boundary integral equations and trigonometric galerkin discretization[ J]. Opt Soc A- mer B, 2004, 21(3) : 393 - 402.

二级参考文献18

  • 1[1]HEEBNER J E, BOYD R W. Scissor solitons and other novel propagation effects in microresonator-modified waveguides [J]. J Opt Soc Am B, 2002, 19(4) :722-731.
  • 2[2]HAGNESS S C, RAFIZADEH D, HO S T, at al. Taflove FDTD Microcavity simulations:design and experimental realization of waveguide-coupled single-mode ring and whispering-gallery-mode disk resonator[J ]. J Lightwave Tehnol, 1997, 15(11):2 154-2 165.
  • 3[3]MCCALL S L, LEVI A F J, SLUSHER R E, et al.Whispering-gallery mode microdisk lasers[J ]. Appl Phys Lett, 1992, 60 (3): 289-291.
  • 4[4]VASSILIEV V V, VELICHANSKY V L, ILCHENKO V S, et al. Narrow-line-width diode laser with a high-Q microsphere resonator [ J ]. Opt Commun, 1998, 158:305-312.
  • 5[5]BRAGINSKY V B, GORODETSKY M L, ILCHENKO V S. Quality-factor and nonlinear properties of optical whispering-gallery modes[J]. Phys Lett A, 1989, 137:393-397.
  • 6[6]SCHILLER S, BYER R L. High-resolution spectroscopy of whispering gallery modes in large dielectric spheres [J] .Opt Lett, 1991, 16:1 138-1 140.
  • 7[7]BERENGER J P. A perfectly matched layer for the absorption of electromagnetic waves [J ]. J Computation Physics, 1994, 114(2): 185-200.
  • 8[8]YEE K S. Numerical solution of initial boundary value problems involving Maxwell's equations in isotropic media, IEEE Trans[J]. Antennas Propagat, 1966, 14 ( 1 ):302-307.
  • 9[9]BOYD R W, HEEBNER J E. Sensitive disk resonator photonic biosensor[ J ]. Appl Opt, 2001, 40(31 ): 5 742-5 746.
  • 10[10]RAFIZADEH D, ZHANG J P, HAGNESS S C, et al.Waveguide-coupled AlGaAs/GaAs microcavity ring and disk resonators with high finesse and 21.6 - nm free spectral range[J]. Opt Lett, 1997,22(16):1 244-1 246.

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