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Random lasing in an Anderson localizing optical fiber

机译:安德森定位光纤中的随机激射

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摘要

A directional random laser mediated by transverse Anderson localization in a disordered glass optical fiber is reported. Previous demonstrations of random lasers have found limited applications because of their multi-directionality and chaotic fluctuations in the laser emission. The random laser presented in this paper operates in the Anderson localization regime. The disorder induced localized states form isolated local channels that make the output laser beam highly directional and stabilize its spectrum. The strong transverse disorder and longitudinal invariance result in isolated lasing modes with negligible interaction with their surroundings, traveling back and forth in a Fabry–Perot cavity formed by the air–fiber interfaces. It is shown that if a localized input pump is scanned across the disordered fiber input facet, the output laser signal follows the transverse position of the pump. Moreover, a uniformly distributed pump across the input facet of the disordered fiber generates a laser signal with very low spatial coherence that can be of practical importance in many optical platforms including image transport with fiber bundles.
机译:据报道,由无序玻璃光纤中的横向安德森定位介导的定向随机激光。由于随机激光的多方向性和激光发射中的混沌波动,因此之前的演示已经发现了有限的应用。本文介绍的随机激光器在安德森定位系统中运行。无序诱导的局部状态形成隔离的局部通道,这些局部通道使输出激光束具有高度的方向性并稳定其光谱。强烈的横向紊乱和纵向不变性导致孤立的激光模式与周围环境的相互作用可忽略不计,在由空气-纤维界面形成的法布里-珀罗腔中来回运动。如图所示,如果在无序的光纤输入面上扫描局部输入泵,则输出激光信号将遵循泵的横向位置。此外,在无序光纤的输入面上分布均匀的泵浦产生的激光信号具有非常低的空间相干性,这在包括光纤束图像传输在内的许多光学平台中可能具有实际意义。

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