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微腔共振条件、品质因数和模式体积由不同的穿透深度决定。

Microcavity resonance condition, quality factor, and mode volume are determined by different penetration depths.

作者信息

Koks C, van Exter M P

出版信息

Opt Express. 2021 Mar 1;29(5):6879-6889. doi: 10.1364/OE.412346.

Abstract

The penetration depth in a distributed Bragg reflector (DBR) co-determines the resonance condition, quality factor, and mode volume of DBR-based microcavities. Recent studies have used an incomplete description of the penetration depth and incorrect equations. We present a complete analysis that involves three different penetration depths. We also present a series of experiments on microcavities to accurately determine the frequency and modal penetration depth of our DBRs and compare these results with theoretical predictions. The obtained results are relevant for anyone who models a DBR as an effective hard mirror if lengths of the order of the wavelength are relevant, as is the case for microcavities.

摘要

分布式布拉格反射器(DBR)中的穿透深度共同决定了基于DBR的微腔的共振条件、品质因数和模式体积。最近的研究对穿透深度的描述不完整且使用了错误的方程。我们进行了全面分析,涉及三种不同的穿透深度。我们还对微腔进行了一系列实验,以准确确定我们的DBR的频率和模式穿透深度,并将这些结果与理论预测进行比较。如果波长量级的长度相关,就像微腔的情况那样,那么对于任何将DBR建模为有效硬镜的人来说,所获得的结果都是有意义的。

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