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Analytical Solution for the Anisotropic Rabi Model: Effects of Counter-Rotating Terms

机译:各向异性拉比模型的解析解:反向旋转项的影响

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摘要

The anisotropic Rabi model, which was proposed recently, differs from the original Rabi model: the rotating and counter-rotating terms are governed by two different coupling constants. This feature allows us to vary the counter-rotating interaction independently and explore the effects of it on some quantum properties. In this paper, we eliminate the counter-rotating terms approximately and obtain the analytical energy spectrums and wavefunctions. These analytical results agree well with the numerical calculations in a wide range of the parameters including the ultrastrong coupling regime. In the weak counter-rotating coupling limit we find out that the counter-rotating terms can be considered as the shifts to the parameters of the Jaynes-Cummings model. This modification shows the validness of the rotating-wave approximation on the assumption of near-resonance and relatively weak coupling. Moreover, the analytical expressions of several physics quantities are also derived, and the results show the break-down of the U(1)-symmetry and the deviation from the Jaynes-Cummings model.
机译:最近提出的各向异性Rabi模型与原始Rabi模型不同:旋转和反向旋转项由两个不同的耦合常数控制。此功能使我们可以独立地改变反向旋转的相互作用,并探索其对某些量子性质的影响。在本文中,我们近似消除了反向旋转项,并获得了解析能谱和波函数。这些分析结果与包括超强耦合机制在内的各种参数的数值计算非常吻合。在弱的反向旋转耦合极限中,我们发现反向旋转项可以看作是向Jaynes-Cummings模型的参数偏移。该修改示出了在近似谐振和相对弱耦合的假设下旋转波近似的有效性。此外,还导出了几个物理量的解析表达式,结果显示了U(1)对称性的破坏以及与Jaynes-Cummings模型的偏差。

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