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Rayleigh scattering in high-Q microspheres

机译:高Q微球中的瑞利散射

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摘要

The Rayleigh scattering has to be largely suppressed in high-Q whispering-gallery modes in microspheres because of restrictions imposed on scattering angles by cavity confinement. Earlier estimates of the fundamental limit for the quality factor in fused-silica microspheres are revisited, and Q similar or equal to 10(12) is predicted in few-millimeter-size fused-silica spheres, if the surface hydration problem is ovecome. Particular effects of surface scattering losses are analyzed, and the manifestation of scattering in the form of intermode coupling is calculated. The predominant effect of counterpropagating mode coupling (intracavity backscattering) is analyzed in the presence of a mode-matched traveling-wave coupler. As much as 100% resonance reflection regime is shown to be feasible. (C) 2000 Optical Society of America. [References: 16]
机译:由于空腔约束对散射角的限制,在微球中的高Q耳语画廊模式中必须极大地抑制瑞利散射。熔融硅微球的品质因数的基本极限的早期估计被重新考虑,并且如果表面水化问题是卵泡的话,则在几毫米大小的熔融硅球中预测的Q等于或等于10(12)。分析了表面散射损耗的特殊影响,并计算了模间耦合形式的散射表现。在存在模式匹配行波耦合器的情况下,分析了反向传播模式耦合(惯性后向散射)的主要影响。已显示多达100%的共振反射方案是可行的。 (C)2000年美国眼镜学会。 [参考:16]

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