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首页> 外文期刊>Physical Review X >Far-from-Equilibrium Route to Superthermal Light in Bimodal Nanolasers
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Far-from-Equilibrium Route to Superthermal Light in Bimodal Nanolasers

机译:在双峰纳米液体中的超高热纤维途径远离均衡途径

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Microscale and nanoscale lasers inherently exhibit rich photon statistics due to complex light-matter interaction in a strong spontaneous emission noise background. It is well known that they may display superthermal fluctuations—photon superbunching—in specific situations due to either gain competition, leading to mode-switching instabilities, or carrier-carrier coupling in superradiant microcavities. Here we show a generic route to superbunching in bimodal nanolasers by preparing the system far from equilibrium through a parameter quench. We demonstrate, both theoretically and experimentally, that transient dynamics after a short-pump-pulse-induced quench leads to heavy-tailed superthermal statistics when projected onto the weak mode. We implement a simple experimental technique to access the probability density functions that further enables quantifying the distance from thermal equilibrium via the thermodynamic entropy. The universality of this mechanism relies on the far-from-equilibrium dynamical scenario, which can be mapped to a fast cooling process of a suspension of Brownian particles in a liquid. Our results open up new avenues to mold photon statistics in multimode optical systems and may constitute a test bed to investigate out-of-equilibrium thermodynamics using micro or nanocavity arrays.
机译:由于在强大的自发发射噪声背景下复杂的光质相互作用,微观和纳米级激光器本身地表现出丰富的光子统计。众所周知,由于增益竞争,它们可以在超大微覆的模式切换稳定性或载波载波耦合,以展示由于增益竞争,或者在超大微透视中的载波载波耦合而在特定情况下显示超高热波通的特定情况。在这里,我们通过准备通过参数淬火的系统远离平衡的系统来显示在双峰纳米玻璃扫描仪中超梭的通用路线。我们在理论上和实验上展示了在短泵脉冲诱导的淬火后的瞬态动力学在投射到弱模式上时导致重尾的超高热统计。我们实现了一种简单的实验技术来访问进一步使得能够通过热力学熵量化与热平衡的距离的概率密度函数。该机制的普遍性依赖于远程平衡动力场景,其可以映射到液体中褐色颗粒的悬浮液的快速冷却过程。我们的结果将新的途径开辟了多模光学系统中的模具光子统计数据,并且可以构成使用微型或纳米蜂窝阵列来研究均衡的热力学的试验台。

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