• Acta Photonica Sinica
  • Vol. 35, Issue 2, 197 (2006)
Yan Jun, Wang Zongbao, Wang Keyi*, and Zhou Shaoxiang
Author Affiliations
  • [in Chinese]
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    DOI: Cite this Article
    Yan Jun, Wang Zongbao, Wang Keyi, Zhou Shaoxiang. The Study of Optical Microsphere Cavity with a Stratified Structure[J]. Acta Photonica Sinica, 2006, 35(2): 197 Copy Citation Text show less
    References

    [1] Gorodetsky M L,Savchenkov A A,Ilchenko V S,et al.Ultimate Q of optical microsphere resonators. Optics Letters,1996,21(7): 453~455

    [2] Gorodetsky M L,Ilchenko V S. High-Q optical whispering-gallery microresonators: precession approach for spherical mode analysis and emission patterns with prism couplers. Optics Communications,1994,113(1-3):133~143

    [3] Little B E,Laine J P,Haus H A,et al. Analytic theory of coupling from tapered fibers and half-blocks into microsphere resonators. Journal of Lightwave Technology,1999,17(4): 704~715

    [4] Laine J P,Tapalian C,Little B E,et al. Acceleration sensor based on high-Q optical microsphere resonator and pedestal antiresonant reflecting waveguide coupler.Sensors and Actuators A,2001,93(1): 1~7

    [5] Lu Y,Wang J Y,Xu X X,et al. Optical bistability and differential amplification in a tapered fiber couplermicrosphere resonator with nonlinear medium. Optics & Laser Tech,2000,32(4): 245~249

    [6] Lu Q Y,Chen X H,Guo W H,et al. Mode characteristics of semiconductor equilateral triangle microcavities with side length of 5-20/spl mu/m. IEEE Photonics Tech Lett,2004,16(2): 359~361

    [7] Guo W H,Huang Y Z,Wang Q M,et al. Resonant frequencies and quality factors for optical equilateral triangle resonators calculated by FDTD technique and the Pade approximation. IEEE Photonics Tech Lett,2000,12 (7): 813~815

    [8] Taflove,Allen. Computational Electrodynamics: The Finite-Difference Time-Domain Method. Boston&London: Artech House,1995.51~105

    [9] Taflove,Allen. Advances in Computational Electrodynamics: The Finite-Difference Time-Domain Method. Boston&London: Artech House,1998.263~296

    [10] Zhang D L,Bai Y L,Feng X Q,et al. Acta Photonica Sinica,2004,33(7): 884~888

    [11] Wang X Q,Wu S F,Jian G S,et al. Acta Optica Sinica,2003,23(12): 1409~1412

    [12] Lin Q C,Xiao Y Y,He S L. Acta Photonica Sinica,2002,31(3): 349~353

    [13] Coccioli R,Boroditsky M,Kim K W,et al. What is the smallest possible electromagnetic mode volume in a dielectric cavity. IEE Proceedings,J(Optoelectronics),1998,145(6): 391~397

    [14] Klitzing W V,Long R,Ⅱchenko V S,et al. Tunable whispering gallery modes for spectroscopy and CQED experiments. New Journal of Physics,2001,3(14): 1~14

    [15] Shibata S,Yano T,Yamane M. Preparation of homogeneous microspheres for optical cavity. Journal of Non-Crystalline Solids,1999,259(1-3): 87~92

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    Yan Jun, Wang Zongbao, Wang Keyi, Zhou Shaoxiang. The Study of Optical Microsphere Cavity with a Stratified Structure[J]. Acta Photonica Sinica, 2006, 35(2): 197
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