论文标题

同质和不均匀振荡抑制状态的量子表现

Quantum manifestations of homogeneous and inhomogeneous oscillation suppression states

论文作者

Bandyopadhyay, Biswabibek, Khatun, Taniya, Biswas, Debabrata, Banerjee, Tanmoy

论文摘要

我们研究了耦合相同的量子振荡器中均质和不均匀振荡抑制态的量子表现。我们考虑通过加权平均场扩散耦合并使用开放量子系统的形式主义耦合的量子van der振荡器,我们表明,取决于平均场的耦合和密度,发生了两种类型的量子振幅死亡,即挤压和非Queeeezed量子弹位振幅死亡。令人惊讶的是,我们发现在经典极限的量子振荡器中不会出现不均匀的振荡抑制状态(或振荡死亡状态)。但是,在深度量子状态下,我们发现了一种振荡死亡状态,该状态通过Wigner功能的对称性分叉在相空间中表现出来。我们的结果还暗示了通过“量子”图灵型分叉从量子振幅死亡到振荡死亡状态的过渡。我们认为,观察量子振荡死亡状态将加深我们对量子域中破坏对称性动态的了解。

We study the quantum manifestations of homogeneous and inhomogeneous oscillation suppression states in coupled identical quantum oscillators. We consider quantum van der Pol oscillators coupled via weighted mean-field diffusive coupling and using the formalism of open quantum system we show that depending upon the coupling and the density of mean-field, two types of quantum amplitude death occurs, namely squeezed and nonsqueezed quantum amplitude death. Surprisingly, we find that the inhomogeneous oscillation suppression state (or the oscillation death state) does not occur in the quantum oscillators in the classical limit. However, in the deep quantum regime we discover an oscillation death-like state which is manifested in the phase space through the symmetry-breaking bifurcation of Wigner function. Our results also hint towards the possibility of the transition from quantum amplitude death to oscillation death state through the "quantum" Turing-type bifurcation. We believe that the observation of quantum oscillation death state will deepen our knowledge of symmetry-breaking dynamics in the quantum domain.

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