论文标题

可调的非线性和有效的谐波产生来自强耦合的轻型系统

Tunable Nonlinearity and Efficient Harmonic Generation from a Strongly Coupled Light-Matter System

论文作者

Welakuh, Davis M., Narang, Prineha

论文摘要

电磁环境中强的光结合耦合为修改和控制化学和物理过程提供了有希望的途径。非线性光学过程的增强的起源,例如第二谐波和第三谐波生成(SHG和THG),这是由于强烈的耦合而引起的,这归因于独特的物理效应,这些效应质疑这些过程中强耦合的相关性。在这项工作中,我们利用了一种第一原理方法来研究在强烈的光耦合下实验观察到的谐振SHG和THG的起源。我们发现,非线性转化效率的增强起源于将相关的非线性光敏感性的修饰作为非线性频谱中出现的极化共振。此外,我们发现可以通过提高光结合强度来调整非线性转换效率。最后,我们提供了一个通用框架,可以从位移场计算谐波生成光谱,而不是从仅从物质诱导的极化中计算谐波频谱的标准方法。我们的结果介绍了该领域的主要辩论,并为预测和理解强烈耦合的光晶格系统中的量子非线性光学现象铺平了道路。

Strong light-matter coupling within electromagnetic environments provides a promising path to modify and control chemical and physical processes. The origin of the enhancement of nonlinear optical processes such as second-harmonic and third-harmonic generation (SHG and THG) due to strong light-matter coupling is attributed to distinct physical effects which questions the relevance of strong coupling in these processes. In this work, we leverage a first-principles approach to investigate the origins of the experimentally observed enhancement of resonant SHG and THG under strong light-matter coupling. We find that the enhancement of the nonlinear conversion efficiency has its origins in a modification of the associated nonlinear optical susceptibilities as polaritonic resonances emerge in the nonlinear spectrum. Further, we find that the nonlinear conversion efficiency can be tuned by increasing the light-matter coupling strength. Finally, we provide a general framework to compute the harmonic generation spectra from the displacement field as opposed to the standard approach which computes the harmonic spectrum from the matter-only induced polarization. Our results address a key debate in the field, and pave the way for predicting and understanding quantum nonlinear optical phenomena in strongly coupled light-matter systems.

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