CREOL, College of Optics and Photonics, University of Central Florida, Orlando, FL, 32816, USA.
Department of Physics, Michigan Technological University, Houghton, MI, 49931, USA.
Nat Commun. 2023 Jan 23;14(1):370. doi: 10.1038/s41467-023-35891-9.
Recent experimental studies in heavily multimoded nonlinear optical systems have demonstrated that the optical power evolves towards a Rayleigh-Jeans (RJ) equilibrium state. To interpret these results, the notion of wave turbulence founded on four-wave mixing models has been invoked. Quite recently, a different paradigm for dealing with this class of problems has emerged based on thermodynamic principles. In this formalism, the RJ distribution arises solely because of ergodicity. This suggests that the RJ distribution has a more general origin than was earlier thought. Here, we verify this universality hypothesis by investigating various nonlinear light-matter coupling effects in physically accessible multimode platforms. In all cases, we find that the system evolves towards a RJ equilibrium-even when the wave-mixing paradigm completely fails. These observations, not only support a thermodynamic/probabilistic interpretation of these results, but also provide the foundations to expand this thermodynamic formalism along other major disciplines in physics.
最近在强多模非线性光学系统中的实验研究表明,光功率朝着瑞利-金斯(RJ)平衡状态发展。为了解释这些结果,人们援引了基于四波混频模型的波动湍流概念。最近,出现了一种基于热力学原理的处理这类问题的不同范例。在这种形式主义中,RJ 分布仅由于遍历性而出现。这表明 RJ 分布的起源比以前想象的更为普遍。在这里,我们通过研究物理上可访问的多模平台中的各种非线性光物质耦合效应来验证这个普遍性假设。在所有情况下,我们发现系统都朝着 RJ 平衡状态演化,即使波混合范例完全失效。这些观察结果不仅支持对这些结果进行热力学/概率解释,而且还为沿着物理学中的其他主要学科扩展这个热力学形式主义提供了基础。