论文标题
经典迪克模型的实验实现
Experimental realization of the classical Dicke model
论文作者
论文摘要
我们报告了半经典近似中DICKE模型的实验实现,该模型描述了与单模电磁场相互作用的大量两级原子在完美反映的腔中。这是通过使用两个非线性耦合的合成LC电路来管理的,该电路通过模拟电气组件实现。我们平台的简单性和多功能性不仅使我们不仅可以在Dicke模型中探索常规和混乱轨迹的共存,而且还可以直接观察所谓的地面态和激发态``量子''相位过渡。在此分析中,使用相空间,Lyapunov指数和最近引入的超级订单相关器(OTOC)中的轨迹用于识别我们电子设备的不同操作机制。进行详尽的数值模拟以显示理论与实验之间的定量和定性一致性。
We report the experimental implementation of the Dicke model in the semiclassical approximation, which describes a large number of two-level atoms interacting with a single-mode electromagnetic field in a perfectly reflecting cavity. This is managed by making use of two non-linearly coupled active, synthetic LC circuits, implemented by means of analog electrical components. The simplicity and versatility of our platform allows us not only to experimentally explore the coexistence of regular and chaotic trajectories in the Dicke model but also to directly observe the so-called ground-state and excited-state ``quantum'' phase transitions. In this analysis, the trajectories in phase space, Lyapunov exponents and the recently introduced Out-of-Time-Order-Correlator (OTOC) are used to identify the different operating regimes of our electronic device. Exhaustive numerical simulations are performed to show the quantitative and qualitative agreement between theory and experiment.