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首页> 外文期刊>Journal of Physics, B. Atomic, Molecular and Optical Physics: An Institute of Physics Journal >Chaos in circuit QED: Decoherence, localization and nonclassicality
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Chaos in circuit QED: Decoherence, localization and nonclassicality

机译:电路QED中的混沌:退相干,局部化和非经典性

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We study the open system dynamics of a circuit quantum electrodynamics (QED) model operating in the ultrastrong coupling regime. If the resonator is pumped periodically in time the underlying classical system is chaotic. Indeed, the periodically driven Jaynes-Cummings model in the Born-Oppenheimer approximation resembles a Duffing oscillator which in the classical limit is a well-known example of a chaotic system. Detection of the field quadrature of the output field acts as an effective position measurement of the oscillator. We address how such detection affects the quantum chaotic evolution in this bipartite system. We differentiate between single measurement realizations and ensembles of repeated measurements. In the former case a measurement/decoherence induced localization effect is encountered, while in the latter this localization is almost completely absent. This is in marked contrast to numerous earlier works discussing the quantum-classical correspondence in measured chaotic systems. This lack of a classical correspondence under relatively strong measurement induced decoherence is attributed to the inherent quantum nature of the qubit subsystem and in particular to the quantum correlations between the qubit and the field which persist despite the decoherence.
机译:我们研究在超强耦合状态下运行的电路量子电动力学(QED)模型的开放系统动力学。如果谐振器被及时周期性地泵浦,则基本的经典系统将是混乱的。确实,在Born-Oppenheimer近似中,周期性驱动的Jaynes-Cummings模型类似于Duffing振荡器,在经典极限下,Duffing振荡器是混沌系统的一个众所周知的例子。输出场的场正交的检测用作振荡器的有效位置测量。我们讨论了这种检测如何影响该二分系统中的量子混沌演化。我们区分单次测量实现和重复测量的集合。在前一种情况下,会遇到测量/退相干引起的定位效果,而在后一种情况下,几乎完全不会出现这种定位。这与许多先前讨论测量的混沌系统中的量子经典对应关系的著作形成了鲜明的对比。在相对强的测量引起的退相干下缺乏经典对应关系的原因是量子位子系统的固有量子性质,尤其是归因于量子位与场之间的量子相关性,尽管存在退相干,该场仍然存在。

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