Gain-compensated metal cavity modes and a million-fold improvement of Purcell factors

Becca VanDrunen, Juanjuan Ren, Sebastian Franke, and Stephen Hughes
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Abstract

Using a rigorous mode theory for gain-compensated plasmonic dimers, we demonstrate how quality factors and Purcell factors can be dramatically increased, improving the quality factors from 10 to over 26,000 and the peak Purcell factors from approximately 3000 to over 10 billion. Full three-dimensional calculations are presented for gold dimers in a finite-size gain medium, which allows one to easily surpass fundamental Purcell factor limits of lossy media. Within a regime of linear system response, we show how the Purcell factors are modified by the contributions from the projected local density of states as well as a non-local gain. Further, we show that the effective mode volume and radiative beta factors remain relatively constant, despite the significant enhancement of the Purcell factors.
增益补偿金属腔模式和普赛尔因子的百万倍改进
利用增益补偿质子二聚体的严格模式理论,我们展示了如何显著提高品质因数和普赛尔因子,将品质因数从 10 提高到 26,000 以上,将普赛尔因子峰值从大约 3000 提高到 100 亿以上。我们介绍了有限尺寸增益介质中金二聚体的全三维计算,这使得我们可以轻松超越有损介质的基本普赛尔因子限制。在线性系统响应机制中,我们展示了珀塞尔因子是如何被投影局部态密度和非局部增益的贡献所改变的。此外,我们还展示了尽管普赛尔因子显著增强,但有效模式体积和辐射贝塔因子仍保持相对恒定。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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