腔电动力学中光散射的影响:含退相干的菲涅耳方程
The effect of light scattering in cavity electrodynamics: Fresnel equations with decoherence
- University of Puerto Rico-Humacao(波多黎各大学马阿乌分校)
- University of Pennsylvania(宾夕法尼亚大学)
- Tel Aviv University(特拉维夫大学)
机构由 AI 辅助整理,请以论文原文为准。
AI总结:
本文研究法布里-珀罗微腔中光退相干效应,采用Büttiker模型处理散射,发现退相侵蚀腔光子模式并阻碍分子极化激元形成,导致光谱中极化激元特征消失。
AI中文摘要:
我们考虑了法布里-珀罗(FP)微腔中光退相干的影响。研究表明,当存在退相干时,它可能显著改变腔体对入射光的线性响应。边界反射镜的光学性质采用经典电动力学描述,而引起相位破坏的光散射则被处理为多通道散射问题,采用了Büttiker为描述电子输运中的退相而引入的模型。我们证明,退相会导致腔光子模式逐渐侵蚀,从而阻碍分子极化激元的形成。因此,随着散射的增强,微腔透射和吸收光谱中的极化激元特征逐渐消失。
英文摘要:
We consider the effect of light decoherence in a Fabri-Perot (FP) microcavity. We show that, when present, it may significantly change its linear response to the incident light.The optical properties of the bounding mirrors are described using the classical electrodynamics, and the light scattering causing the phase breaking is treated as a multichannel scattering problem employing a model introduced by Büttiker to describe dephasing in electron transport. We show that the dephasing causes a gradual erosion of the cavity photon mode and thus impedes the formation of molecular polaritons. Consequently, the polaritons signatures in the transmission and absorption optical spectra of the microcavity are fading away as the scattering intensifies.