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Laminar-Turbulent Transition in Raman Fiber Lasers: A First Passage Statistics Based Analysis

机译:拉曼光纤激光器的层流湍流跃迁:基于通道统计的首次分析

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摘要

Loss of coherence with increasing excitation amplitudes and spatial size modulation is a fundamental problem in designing Raman fiber lasers. While it is known that ramping up laser pump power increases the amplitude of stochastic excitations, such higher energy inputs can also lead to a transition from a linearly stable coherent laminar regime to a non-desirable disordered turbulent state. This report presents a new statistical methodology, based on first passage statistics, that classifies lasing regimes in Raman fiber lasers, thereby leading to a fast and highly accurate identification of a strong instability leading to a laminar-turbulent phase transition through a self-consistently defined order parameter. The results have been consistent across a wide range of pump power values, heralding a breakthrough in the non-invasive analysis of fiber laser dynamics.
机译:随着激励幅度和空间尺寸调制的增加,相干性损失是设计拉曼光纤激光器的基本问题。虽然已知增加激光泵浦功率会增加随机激发的幅度,但这种较高的能量输入也可能导致从线性稳定的相干层流状态过渡到不希望的无序湍流状态。本报告基于首次通过统计数据提出了一种新的统计方法,该方法对拉曼光纤激光器中的激光发射态进行了分类,从而通过自定义一致的方法快速,高度准确地识别了强不稳定性,从而导致了层流湍流相变。订单参数。在广泛的泵浦功率值范围内,结果都是一致的,这预示着光纤激光动力学非侵入性分析的突破。

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