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首页> 外文期刊>Physical Review, A >Critical phenomena and nonlinear dynamics in a spin ensemble strongly coupled to a cavity. II. Semiclassical-to-quantum boundary
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Critical phenomena and nonlinear dynamics in a spin ensemble strongly coupled to a cavity. II. Semiclassical-to-quantum boundary

机译:旋转的临界现象和非线性动力学中强烈耦合到腔的旋转组合。 II。 半半径到量子边界

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摘要

We numerically study the dynamics and stationary states of a spin ensemble strongly coupled to a singlemode resonator subjected to loss and external driving. Employing a generalized cumulant expansion approach we analyze finite-size corrections to a semiclassical description of amplitude bistability, which is a paradigm example of a driven-dissipative phase transition. Our theoretical model allows us to include inhomogeneous broadening of the spin ensemble and to capture in which way the quantum corrections approach the semiclassical limit for increasing ensemble size N. We set up a criterion for the validity of the Maxwell-Bloch equations and show that close to the critical point of amplitude bistability even very large spin ensembles consisting of up to 10~4 spins feature significant deviations from the semiclassical theory.
机译:我们在数值上研究了强烈耦合到经过损耗和外部驱动的单模谐振器的旋转系体的动态和静止状态。 采用广义累积膨胀方法,我们将有限尺寸校正分析到幅度双稳态的半思法描述,这是驱动 - 耗散相转变的范式示例。 我们的理论模型允许我们包括旋转集合的不均匀扩大并捕获,以便量子校正方法对增加集成尺寸N的半导体限制。我们为Maxwell-Bloch方程的有效性设置了一个标准,并显示关闭 对于振幅的临界点,甚至非常大的旋转节奏,由多达10〜4个旋转组成,具有与半透明理论的显着偏差。

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