论文标题

非马克维亚反统计时间对称系统:理论与实验

Non-Markovian anti-parity-time symmetric systems: theory and experiment

论文作者

Wilkey, Andrew, Suelzer, Joseph, Joglekar, Yogesh N., Vemuri, Gautam

论文摘要

具有反平价时间的开放系统(抗$ \ Mathcal {pt} $ - )或$ \ MATHCAL {PT} $对称性在其Hermitian对应物中表现出丰富的现象学。迄今为止,所有模型系统及其在古典平台和量子平台之间的各种实现都在及时的本地,即马克维安。在这里,我们提出了一个具有抗 - $ \ Mathcal {pt} $ - 对称性的非马克维亚系统,其中单个时间延迟编码内存,并通过两个时间延迟耦合的半导体激光器在实验上证明其后果。具有无限许多特征值对的先验特征方程将我们的模型与众不同。我们表明,一系列放大到分娩的主导模式转变是由我们最小模型的时间延迟引起的。这些跃迁的签名在数量上与激光动力学的四个耦合的非线性速率方程获得的定量匹配结果,并在激光强度曲线中被视为恒定宽度侧带振荡。我们的工作引入了具有内存的非热门系统的新范式,为它们在经典系统中实现的方式铺平了道路,并且可以适用于量子系统的时期反馈控制。

Open systems with anti parity-time (anti $\mathcal{PT}$-) or $\mathcal{PT}$ symmetry exhibit a rich phenomenology absent in their Hermitian counterparts. To date all model systems and their diverse realizations across classical and quantum platforms have been local in time, i.e. Markovian. Here we propose a non-Markovian system with anti-$\mathcal{PT}$-symmetry where a single time-delay encodes the memory, and experimentally demonstrate its consequences with two time-delay coupled semiconductor lasers. A transcendental characteristic equation with infinitely many eigenvalue pairs sets our model apart. We show that a sequence of amplifying-to-decaying dominant mode transitions is induced by the time delay in our minimal model. The signatures of these transitions quantitatively match results obtained from four, coupled, nonlinear rate equations for laser dynamics, and are experimentally observed as constant-width sideband oscillations in the laser intensity profiles. Our work introduces a new paradigm of non-Hermitian systems with memory, paves the way for their realization in classical systems, and may apply to time-delayed feedback-control for quantum systems.

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