论文标题

多模纤维中疾病介导的波凝结的急剧加速度

Dramatic acceleration of wave condensation mediated by disorder in multimode fibers

论文作者

Fusaro, Adrien, Garnier, Josselin, Krupa, Katarzyna, Millot, Guy, Picozzi, Antonio

论文摘要

经典的非线性波表现出一种缩合现象,该现象是由天然不可逆的热化过程所产生的,与量子玻色 - 内斯坦凝结类似。波凝结起源于热力学平衡雷利 - 吉恩斯分布的差异,该分布负责系统的基本模式的宏观种群。然而,已知通过非线性光学传播实现不连贯波的完整热化和凝结,需要过度的大相互作用长度。在这里,我们得出一个离散的动力学方程,描述了在存在培养基结构障碍的情况下随机波的非平衡演化。我们的理论表明,弱小的疾病通过几个大小顺序加速了热化和凝结速率。这种违反直觉的凝结加速度可以为最近发现的光束自我清洁现象提供自然的解释。我们在多模光纤中进行的实验报告了从不连贯的热分布到波凝结的过渡,在波导诱捕电位的基本模式下,冷凝物比例高达60%。

Classical nonlinear waves exhibit a phenomenon of condensation that results from the natural irreversible process of thermalization, in analogy with the quantum Bose-Einstein condensation. Wave condensation originates in the divergence of the thermodynamic equilibrium Rayleigh-Jeans distribution, which is responsible for the macroscopic population of the fundamental mode of the system. However, achieving complete thermalization and condensation of incoherent waves through nonlinear optical propagation is known to require prohibitive large interaction lengths. Here, we derive a discrete kinetic equation describing the nonequilibrium evolution of the random wave in the presence of a structural disorder of the medium. Our theory reveals that a weak disorder accelerates the rate of thermalization and condensation by several order of magnitudes. Such a counterintuitive dramatic acceleration of condensation can provide a natural explanation for the recently discovered phenomenon of optical beam self-cleaning. Our experiments in multimode optical fibers report the observation of the transition from an incoherent thermal distribution to wave condensation, with a condensate fraction of up to 60% in the fundamental mode of the waveguide trapping potential.

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