论文标题

多体激子散射中随机过程的光学特征

The Optical Signatures of Stochastic Processes in Many-Body Exciton Scattering

论文作者

Li, Hao, Shah, S. A., Kandada, Ajay Ram Srimath, Silva, Carlos, Piryatinski, Andrei, Bittner, Eric R.

论文摘要

我们回顾了我们最近的量子随机模型,用于在存在共同发展和非平稳背景的激发群体的情况下光谱线形。从相互作用的骨气激子的现场理论描述开始,我们得出了一个简化的模型,通过该模型,光学激子通过其筛选的库仑耦合介导的散射耦合到不一致的背景。然后,光学激子的Heisenberg运动方程是由辅助随机种群变量驱动的,我们将其作为Ornstein-Uhlenbeck过程的解决方案。在这里,我们讨论了我们开发的理论技术的概述,该技术应用于预测连贯的非线性光谱信号。我们展示了直接(库仑)和交换与浴缸的耦合如何产生不同的光谱特征,并讨论了倒频谱特征以提取状态的背景密度的数学限制。

We review our recent quantum stochastic model for spectroscopic lineshapes in the presence of a co-evolving and non-stationary background population of excitations. Starting from a field theory description for interacting bosonic excitons, we derive a reduced model whereby optical excitons are coupled to an incoherent background via scattering as mediated by their screened Coulomb coupling. The Heisenberg equations of motion for the optical excitons are then driven by an auxiliary stochastic population variable, which we take to be the solution of an Ornstein-Uhlenbeck process. Here we discuss an overview of the theoretical techniques we have developed as applied to predicting coherent non-linear spectroscopic signals. We show how direct (Coulomb) and exchange coupling to the bath give rise to distinct spectral signatures and discuss mathematical limits on inverting spectral signatures to extract the background density of states.

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