耦合量子振荡器系统中Meissner微分方程的不稳定性及其与光子激发和纠缠的关系

Q2 Physics and Astronomy
Radouan Hab-arrih, A. Jellal, D. Stefanatos, A. Merdaci
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引用次数: 3

摘要

在这项工作中,我们研究了由两个非共振时间相关耦合振荡器组成的系统中光子激发数和纠缠的薛定谔动力学。通过考虑π周期泵浦参数(振荡器频率和耦合)并使用适当的变换,我们表明量子动力学可以由两个经典的迈斯纳振荡器确定。然后,我们用数值方法分析了这些微分方程的稳定性以及量子系统中光子激发和纠缠的动力学。我们的分析显示了两个有趣的结果,可以总结如下:(i)量子振荡器的经典模拟的经典不稳定性和光子激发数(期望Nj)是强相关的,以及(ii)光子激发和纠缠是相互联系的。这些结果可以用来阐明量子系统与其经典系统之间的联系,并为现有研究耦合量子振荡器动力学的工作提供很好的补充。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Instability of Meissner Differential Equation and Its Relation with Photon Excitations and Entanglement in a System of Coupled Quantum Oscillators
In this work, we investigate the Schrödinger dynamics of photon excitation numbers and entanglement in a system composed by two non-resonant time-dependent coupled oscillators. By considering π periodically pumped parameters (oscillator frequencies and coupling) and using suitable transformations, we show that the quantum dynamics can be determined by two classical Meissner oscillators. We then study analytically the stability of these differential equations and the dynamics of photon excitations and entanglement in the quantum system numerically. Our analysis shows two interesting results, which can be summarized as follows: (i) Classical instability of classical analog of quantum oscillators and photon excitation numbers (expectations Nj) are strongly correlated, and (ii) photon excitations and entanglement are connected to each other. These results can be used to shed light on the link between quantum systems and their classical counterparts and provide a nice complement to the existing works studying the dynamics of coupled quantum oscillators.
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来源期刊
Quantum Reports
Quantum Reports Physics and Astronomy-Physics and Astronomy (miscellaneous)
CiteScore
3.30
自引率
0.00%
发文量
33
审稿时长
10 weeks
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