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Simulating quantum dynamical phenomena using classical oscillators: Landau-Zener-Stückelberg-Majorana interferometry latching modulation and motional averaging

机译:使用经典振荡器模拟量子动力学现象:Landau-Zener-Stückelberg-Majorana干涉测量锁存调制和运动平均

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摘要

A quantum system can be driven by either sinusoidal, rectangular, or noisy signals. In the literature, these regimes are referred to as Landau-Zener-Stückelberg-Majorana (LZSM) interferometry, latching modulation, and motional averaging, respectively. We demonstrate that these pronounced and interesting effects are also inherent in the dynamics of classical two-state systems. We discuss how such classical systems are realized using either mechanical, electrical, or optical resonators. In addition to the fundamental interest of such dynamical phenomena linking classical and quantum physics, we believe that these are attractive for the classical analogue simulation of quantum systems.
机译:量子系统可以由正弦,矩形或噪声信号驱动。在文献中,这些机制分别称为Landau-Zener-Stückelberg-Majorana(LZSM)干涉测量法,锁存调制和运动平均。我们证明了这些明显和有趣的效应也是经典的两态系统动力学的固有特性。我们讨论了如何使用机械,电气或光学谐振器实现这种经典系统。除了这种将经典物理学和量子物理学联系起来的动力学现象的基本意义外,我们相信这些对于量子系统的经典模拟仿真也具有吸引力。

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