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Observation of Lévy distribution and replica symmetry breaking in random lasers from a single set of measurements

机译:从单组测量中观察随机激光器中Lévy分布和复制品对称性破裂

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摘要

Random lasers have been recently exploited as a photonic platform for studies of complex systems. This cross-disciplinary approach opened up new important avenues for the understanding of random-laser behavior, including Lévy-type distributions of strong intensity fluctuations and phase transitions to a photonic spin-glass phase. In this work, we employ the Nd:YBO random laser system to unveil, from a single set of measurements, the physical origin of the complex correspondence between the Lévy fluctuation regime and the replica-symmetry-breaking transition to the spin-glass phase. A novel unexpected finding is also reported: the trend to suppress the spin-glass behavior for high excitation pulse energies. The present description from first principles of this correspondence unfolds new possibilities to characterize other random lasers, such as random fiber lasers, nanolasers and small lasers, which include plasmonic-based, photonic-crystal and bio-derived nanodevices. The statistical nature of the emission provided by random lasers can also impact on their prominent use as sources for speckle-free laser imaging, which nowadays represents one of the most promising applications of random lasers, with expected progress even in cancer research.
机译:随机激光器最近已被用作研究复杂系统的光子平台。这种跨学科的方法为理解随机激光行为开辟了新的重要途径,包括强强度起伏和相变到光子自旋玻璃相的李维型分布。在这项工作中,我们使用Nd:YBO随机激光系统从一组测量结果中揭示了Lévy起伏状态与复制体对称断裂到自旋玻璃相转变之间复杂对应关系的物理起源。还报道了一个新的意外发现:抑制高激发脉冲能量的自旋玻璃行为的趋势。从这种对应关系的第一原理的本描述展现了表征其他随机激光器的新可能性,例如随机光纤激光器,纳米激光和小型激光器,包括基于等离子体的,光子晶体和生物来源的纳米器件。随机激光器提供的发射的统计性质也可能会影响其作为无斑点激光成像源的显着用途,如今它已成为随机激光器最有希望的应用之一,即使在癌症研究中也有望取得进展。

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