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Observation of whispering-gallery mode splitting in spherical resonator

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【Author】 LIN Guo-ping1,ZHANG Lei1,MA Le1,SUN Ming-hao2,XU Hui-ying2,and CAI Zhi-ping2 1. Department of Physics,Xiamen University,Xiamen 361005,China 2. Department of Electronic Engineering,Xiamen University,Xiamen 361005,China

【摘要】 We report the observation of the splitting of whispering-gallery mode in the silica spherical resonator. To characterize the fused-silica spherical resonator,an evanescent fiber taper coupling technique is employed. The coupling system consists of a fiber taper with a diameter of about 2.8 microns and a fused-silica spherical resonator with a diameter of about 143 microns. By injecting the laser power into the fiber taper,a number of narrow absorption peaks with equal peak spacing of 3.7 nm are observed in a wide spectral range. After replacing the resonator by the other one with the shape being slightly modified,whispering-gallery mode splitting in the spherical resonator is observed. The wavelength spacing between adja-cent peaks is 0.32 nm,much smaller than that of the previous one.

【Abstract】 We report the observation of the splitting of whispering-gallery mode in the silica spherical resonator. To characterize the fused-silica spherical resonator,an evanescent fiber taper coupling technique is employed. The coupling system consists of a fiber taper with a diameter of about 2.8 microns and a fused-silica spherical resonator with a diameter of about 143 microns. By injecting the laser power into the fiber taper,a number of narrow absorption peaks with equal peak spacing of 3.7 nm are observed in a wide spectral range. After replacing the resonator by the other one with the shape being slightly modified,whispering-gallery mode splitting in the spherical resonator is observed. The wavelength spacing between adja-cent peaks is 0.32 nm,much smaller than that of the previous one.

【关键词】 resonatorgallerysphericalsilicacharacterizespacingfusedsplittingmicrosphereslightly
【基金】 This projec was supported by National Natural Science Foundation of China (60277026,90206039)
  • 【文献出处】 Optoelectronics Letters ,光电子快报(英文版) , 编辑部邮箱 ,2007年03期
  • 【分类号】TN751.2
  • 【下载频次】26
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