论文标题

紧密结合非线性多模光子系统中的热力学光压

Thermodynamic optical pressures in tight-binding nonlinear multimode photonic systems

论文作者

Efremidis, Nikolaos K., Christodoulides, Demetrios N.

论文摘要

众所周知,光学力在许多多样化的物理环境中以普遍的方式出现。因此,它们在生物素,验光力学和集成光学等领域已成功地在广泛的应用中使用。到目前为止,已经对几种模式光子网络中的元素间光学作用进行了系统的分析,但对于它们如何在高度多模型的光学环境中表现出来,鲜为人知(如果有的话)。在这项工作中,通过统计力学,我们在光学热的弱非线性多模束紧密结合网络中正式解决了这个空旷的问题。概述的热力学配方允许以优雅的方式获得一个非常复杂的热力学压力的分析结果,这些结果是在计算密集型上或无法获得的,这些压力是计算密集型或无法获得的。因此,我们为显示的元素中显示的热力学光压得出简单的闭合形式表达,这仅取决于内部能量以及所涉及的耦合系数。在所有情况下,我们的理论结果与数值计算都非常吻合。我们的研究可能会为对这些复杂过程的更深入了解,并可以在利用多模磁力系统中的辐射力方面开放途径。

Optical forces are known to arise in a universal fashion in many and diverse physical settings. As such, they are successfully employed over a wide range of applications in areas like biophotonics, optomechanics and integrated optics. While inter-elemental optical forces in few-mode photonic networks have been so far systematically analyzed, little is known, if any, as to how they manifest themselves in highly multimoded optical environments. In this work, by means of statistical mechanics, we formally address this open problem in optically thermalized weakly nonlinear heavily multimode tight-binding networks. The outlined thermodynamic formulation allows one to obtain in an elegant manner analytical results for the exerted thermodynamic pressures in utterly complex arrangements-results that are either computationally intensive or impossible to obtain otherwise. Thus, we derive simple closed-form expressions for the thermodynamic optical pressures displayed among elements, which depend only on the internal energy as well as the coupling coefficients involved. In all cases, our theoretical results are in excellent agreement with numerical computations. Our study may pave the way towards a deeper understanding of these complex processes and could open up avenues in harnessing radiation forces in multimode optomechanical systems.

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