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Effective Landau-Zener transitions in the circuit dynamical Casimir effect with time-varying modulation frequency

机译:具有时变调制频率的电路动态Casimir效应的有效Landau - 齐纳转换

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We consider the dissipative single-qubit circuit QED architecture in which the atomic transition frequency undergoes a weak external time modulation. For sinusoidal modulation with linearly varying frequency we derive effective Hamiltonians that resemble the Landau-Zener problem of finite duration associated with a twoor multilevel systems. The corresponding off-diagonal coupling coefficients originate either from the rotating or the counter-rotating terms in the Rabi Hamiltonian, depending on the values of the modulation frequency. It is demonstrated that in the dissipationless case one can accomplish almost complete transitions between the eigenstates of the bare Rabi Hamiltonian even for relatively short durations of the frequency sweep. To assess the experimental feasibility of our scheme we solved numerically the phenomenological and the microscopic quantum master equations in the Markovian regime at zero temperature. Both models exhibit qualitatively similar behavior and indicate that photon generation from vacuum via effective Landau-Zener transitions could be implemented with the current technology on the time scales of a few microseconds. Moreover, unlike the harmonic dynamical Casimir effect implementations, our proposal does not require precise knowledge of the resonant modulation frequency to accomplish meaningful photon generation.
机译:我们考虑耗散单反电路QED型架构,其中原子过渡频率经历弱外部时间调制。对于具有线性变化频率的正弦调制,我们推出了类似于与二维多级系统相关的有限持续时间的Landau-Zener问题的有效汉密尔顿人。相应的截止斜耦合系数来自Rabi Hamiltonian中的旋转或反向旋转术语,取决于调制频率的值。据证明,在不可能的情况下,即使对于频率扫描的相对短的持续时间,也可以在裸RABI HAMILTONIAN的突击员之间完成几乎完全过渡。为了评估我们的方案的实验性可行性,我们在零温度下以数字方式解决了马尔维亚语法中的现象学和微观量子母部方程。这两种模型都表现出定性类似的行为,并表明通过有效的Landau-Zener转换从真空产生的光子可以在几微秒的时间尺度上用当前技术实现。此外,与谐波动态Casimir效应实现不同,我们的提议不需要精确地了解谐振调制频率以实现有意义的光子生成。

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