论文标题
直接观察多模光纤中的雷利 - 吉恩分布的热化分布
Direct Observation of Thermalization to a Rayleigh-Jeans Distribution in Multimode Optical Fibers
论文作者
论文摘要
近年来,在非线性多模光学系统中见证了兴趣的复兴,在单模设置中已经观察到了许多有趣的效果。尽管非线性可以提供丰富的环境,在这种环境中,成千上万种模式之间的混沌电源交换可以导致新型行为,但同时,它在理解和利用这些过程的优势方面构成了一个重大挑战。多年来,已经开发出统计模型来宏观描述这些复杂系统的响应。这些理论形式主义的基石之一是预测光子光子介导的热化过程,该过程导致模式职业的瑞利(Rayleigh-Jeans)分布。在这里,我们报告了使用模式分辨的测量技术将热量的首次直接观察到多模光纤中的瑞利 - 吉恩的功率分布。我们在实验上证明,在繁殖过程中,在堕落的模式之间发生功率焦点的同时,汉密尔顿的基本系统仍然不变,这完全符合理论预测。我们的结果可能会为新一代的高功率光源铺平道路,其亮度和模态含量可以使用热力学和统计力学的原理来控制。
Recent years have witnessed a resurgence of interest in nonlinear multimode optical systems where a host of intriguing effects have been observed that are impossible in single-mode settings. While nonlinearity can provide a rich environment where the chaotic power exchange among thousands of modes can lead to novel behaviors, at the same time, it poses a major challenge in terms of understanding and harnessing these processes to advantage. Over the years, statistical models have been developed to macroscopically describe the response of these complex systems. One of the cornerstones of these theoretical formalisms is the prediction of a photon-photon mediated thermalization process that leads to a Rayleigh-Jeans distribution of mode occupations. Here we report the use of mode-resolved measurement techniques to make the first direct observations of thermalization to a Rayleigh-Jeans power distribution in a multimode optical fiber. We experimentally demonstrate that the underlying system Hamiltonian remains invariant during propagation while power equipartition takes place among degenerate groups of modes - all in full accord with theoretical predictions. Our results may pave the way toward a new generation of high-power optical sources whose brightness and modal content can be controlled using principles from thermodynamics and statistical mechanics.