布里渊随机光纤激光器中的瞬态复制对称破缺

IF 15.7 Q1 OPTICS PhotoniX Pub Date : 2023-10-09 DOI:10.1186/s43074-023-00107-2
Liang Zhang, Jilin Zhang, Fufei Pang, Tingyun Wang, Liang Chen, Xiaoyi Bao
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引用次数: 0

摘要

摘要复制对称破缺(RSB)作为磁性系统中顺磁性态和自旋玻璃态之间的一种特征相变,已经在随机激光复杂系统中得到了预测和验证,该系统涉及通过增益竞争相互作用的众多随机模式,并表现出无序诱导的玻璃行为挫折。然而,涉及光子复合系统微态演化的RSB相变动力学尚未得到很好的研究。本文通过基于外差技术的高分辨率随机激光模式景观揭示了基于布里渊随机光纤激光器(BRFL)的光子系统中瞬态RSB的实验证据。由于BRFLs中激活随机模态的寿命延长,Parisi重叠参数在时间和频率域的时间相关统计信息的详细映射得到了及时解决,归因于瞬态RSB动力学与随机模态演化之间的令人信服的相似性。这些发现突出表明,基于brfl的系统具有定制光子复杂平台的柔性线束,为时间分辨瞬态RSB观测提供了极好的机会,为探索复杂系统和非线性现象的基础和应用开辟了新的途径。
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Transient replica symmetry breaking in Brillouin random fiber lasers
Abstract Replica symmetry breaking (RSB), as a featured phase transition between paramagnetic and spin glass state in magnetic systems, has been predicted and validated among random laser-based complex systems, which involves numerous random modes interplayed via gain competition and exhibits disorder-induced frustration for glass behavior. However, the dynamics of RSB phase transition involving micro-state evolution of a photonic complex system have never been well investigated. Here, we report experimental evidence of transient RSB in a Brillouin random fiber laser (BRFL)-based photonic system through high-resolution unveiling of random laser mode landscape based on heterodyne technique. Thanks to the prolonged lifetime of activated random modes in BRFLs, an elaborated mapping of time-dependent statistics of the Parisi overlap parameter in both time and frequency domains was timely resolved, attributing to a compelling analogy between the transient RSB dynamics and the random mode evolution. These findings highlight that BRFL-based systems with the flexible harness of a customized photonic complex platform allow a superb opportunity for time-resolved transient RSB observation, opening new avenues in exploring fundamentals and application of complex systems and nonlinear phenomena.
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来源期刊
CiteScore
25.70
自引率
0.00%
发文量
0
审稿时长
13 weeks
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