量子和半经典拉比模型中旋转波近似的光谱和动力学有效性 [特邀]

H. F. A. Coleman, E. K. Twyeffort
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引用次数: 0

摘要

量子拉比(Rabi)模型中的超强耦合(USC)以旋转波近似(RWA)的崩溃为特征,已成为一个颇受关注和研究的课题。这篇对旋转波近似有效性的批判性重新评估得出的结论是,以耦合与场频的固定比率来定义超强耦合是不充分的。将改进的频谱有效性标准与半经典极限的推导联系起来,表明量子 RWA 的动态有效性应与相应的半经典模型的动态有效性联系起来。然而,相干态动力学的数值计算并不支持这一点,它明确地证明了频谱有效性并不意味着动力学有效性,而且揭示了与耦合和场振幅之间令人惊讶的复杂依赖关系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Spectral and dynamical validity of the rotating-wave approximation in the quantum and semiclassical Rabi models [Invited]
Ultrastrong coupling (USC) in the quantum Rabi model, characterized by the breakdown of the rotating-wave approximation (RWA), has emerged as a topic of considerable interest and study. This critical reevaluation of the validity of the RWA concludes that the accepted definition of USC in terms of a fixed ratio of coupling to field frequency is inadequate. Connecting an improved spectral validity criterion with the derivation of the semiclassical limit suggests that the dynamical validity of the quantum RWA should be linked to that of the corresponding semiclassical model. This, however, is not supported by numerical calculations of coherent-state dynamics, which unambiguously demonstrate that spectral validity does not imply dynamical validity and reveal surprisingly complicated dependence on coupling and field amplitude.
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