论文标题

非线性光子链网络的熵热力学

Entropic thermodynamics of nonlinear photonic chain networks

论文作者

Wu, Fan O., Jung, Pawel S., Parto, Midya, Khajavikhan, Mercedeh, Christodoulides, Demetrios N.

论文摘要

最近,多模灯波结构的复杂非线性行为已成为大量关注的重点。在这里,我们开发了一种光学热力学方法,能够描述大规模非线性光子链网络中的热化动力学 - 到目前为止尚未解决的问题。获得了一个明确提供这些系统熵的suckur四极方程,该方程可根据所有涉及的大量变量提供这些系统的熵。此熵描述导致一组自洽的状态方程组,从可以唯一地确定光子气体的光学温度和化学电位。讨论了此类链网络中的等体膨胀/压缩,焦耳膨胀以及与光束清洁/冷却和热传导效应相关的方面。我们的结果开放了新的远景,通过它可以轻松地描述高度多模型的非线性骨系统的极其复杂的动力学,这些动力学现在在从高功率光子设置到冷原子冷凝物和光学力学的区域中很重要。

The complex nonlinear behaviors of heavily multimode lightwave structures have been recently the focus of considerable attention. Here we develop an optical thermodynamic approach capable of describing the thermalization dynamics in large scale nonlinear photonic chain networks - a problem that has remained unresolved so far. A Sackur-Tetrode equation is obtained that explicitly provides the entropy of these systems in terms of all the extensive variables involved. This entropic description leads to a self-consistent set of equations of state from where the optical temperature and chemical potential of the photon gas can be uniquely determined. Processes like isentropic expansion/compression, Joule expansion, as well as aspects associated with beam cleaning/cooling and thermal conduction effects in such chain networks are discussed. Our results open new vistas through which one can describe in an effortless manner the exceedingly complex dynamics of highly multimoded nonlinear bosonic systems that are nowadays of importance in areas ranging from high-power photonic settings to cold atom condensates and optomechanics.

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