首页> 外文期刊>IEEE journal of selected topics in quantum electronics >Cold-cavity thresholds of microdisks with uniform and nonuniform gain: quasi-3-D modeling with accurate 2-D analysis
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Cold-cavity thresholds of microdisks with uniform and nonuniform gain: quasi-3-D modeling with accurate 2-D analysis

机译:具有均匀和非均匀增益的微型磁盘的冷腔阈值:具有精确2D分析的准3D建模

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摘要

An electromagnetic analysis of thin-disk semiconductor resonators with uniform and nonuniform gain regions is presented. A "cold-cavity-with-gain" Maxwellian formulation, including accurate boundary and radiation conditions, is considered as an eigenvalue problem, for the real-valued parameters of frequency and threshold material gain. Although the well-known approximate effective-index method is used to reduce a three-dimensional (3-D) field problem to a two-dimensional (2-D) one, a rigorous formulation of the latter is retained. A quasi-3-D feature is provided through full account of the multiple-wave nature and dispersion of the effective index. Results obtained quantify the ultralow thresholds of the whispering-gallery modes and show the advantage of a ring-shaped gain region.
机译:提出了具有均匀和非均匀增益区域的薄盘半导体谐振器的电磁分析。对于频率和阈值材料增益的实数值参数,包括准确边界和辐射条件在内的“带增益的冷腔”麦克斯韦公式被视为特征值问题。尽管使用众所周知的近似有效折射率方法将三维(3-D)场问题简化为二维(2-D)场问题,但仍保留了后者的严格公式。通过充分考虑多波性质和有效折射率的离散性,提供了准3维特征。获得的结果量化了耳语画廊模式的超低阈值,并显示了环形增益区域的优势。

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