论文标题
色散时间依赖性材料的光学特性
Optical properties of dispersive time-dependent materials
论文作者
论文摘要
随时间变化的光学材料引起了最近的兴趣,因为它们的潜力可以转换频率,非注射物理学,光子时间晶体等。但是,对时变材料的描述主要限于材料共振(即分散)可以忽略的制度。在这项工作中,我们描述了这些色散时变材料的光学如何从微观量子机械模型的时间驱动系统中出现。我们的结果基于一个框架,用于通过量子机械线性响应理论来描述分散时变材料的光学。重要的是,我们阐明了时间变化材料的响应功能如何与能量传递相关。我们提供了适用于系统的框架的三个示例,这些框架可用于建模各种实验:很少有级别的模型可以描述原子,旋转或超导量子器,振荡器模型,这些模型可以描述极性绝缘体的强烈响应以及强烈驱动的原子模型,这些模型可以描述高度不受欢迎的材料的高度不良光学响应,而材料的高度良好生成生成。我们预计我们的结果将广泛适用于强烈时间变化的系统中的电磁现象。
Time-varying optical materials have attracted recent interest for their potential to enable frequency conversion, nonreciprocal physics, photonic time-crystals, and more. However, the description of time-varying materials has been primarily limited to regimes where material resonances (i.e., dispersion) can be neglected. In this work, we describe how the optics of these dispersive time-varying materials emerges from microscopic quantum mechanical models of time-driven systems. Our results are based on a framework for describing the optics of dispersive time-varying materials through quantum mechanical linear response theory. Importantly, we clarify how response functions for time-varying materials are connected to energy transfer. We provide three examples of our framework applied to systems which can be used to model a wide variety of experiments: few level models that can describe atoms, spins, or superconducting qubits, oscillator models which can describe the strong response of polar insulators, and strongly driven atom models which can describe the highly nonperturbative optical response of materials undergoing high harmonic generation. We anticipate that our results will be broadly applicable to electromagnetic phenomena in strongly time-varying systems.