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首页> 外文期刊>Physical Review, A >Finite-time Landau-Zener processes and counterdiabatic driving in open systems: Beyond Born, Markov, and rotating-wave approximations
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Finite-time Landau-Zener processes and counterdiabatic driving in open systems: Beyond Born, Markov, and rotating-wave approximations

机译:开放系统中的有限时间Landau-Zener过程和反绝热驱动:超越Born,Markov和旋转波逼近

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We investigate Landau-Zener processes modeled by a two-level quantum system, with its finite bias energy varied in time and in the presence of a single broadened cavity mode at zero temperature. By applying the hierarchy equation method to the Landau-Zener problem, we computationally study the survival fidelity of adiabatic states without Born, Markov, rotating-wave, or other perturbative approximations. With this treatment it also becomes possible to investigate cases with very strong system-bath coupling. Different from a previous study of infinite-time Landau-Zener processes, the fidelity of the time-evolving state as compared with instantaneous adiabatic states shows nonmonotonic dependence on the system-bath coupling and on the sweep rate of the bias. We then consider the effect of applying a counterdiabatic driving field, which is found to be useful in improving the fidelity only for sufficiently short Landau-Zener processes. Numerically exact results show that different counterdiabatic driving fields can have very different robustness against environment effects. Lastly, using a case study, we discuss the possibility of introducing a dynamical decoupling field in order to eliminate the decoherence effect of the environment and, at the same time, to retain the positive role of a counterdiabatic field. Our work indicates that finite-time Landau-Zener processes with counterdiabatic driving offer a fruitful testbed to understand controlled adiabatic processes in open systems.
机译:我们研究了由两级量子系统建模的Landau-Zener过程,其有限偏置能量随时间变化并且在零温度下存在单个加宽腔模的情况下。通过将层级方程方法应用于Landau-Zener问题,我们以计算的方式研究了绝热态的生存保真度,而没有Born,Markov,旋转波或其他微扰近似。通过这种处理,还可以研究具有非常强的系统-浴耦合的情况。与先前对无限时Landau-Zener过程的研究不同,与瞬态绝热状态相比,时间演化状态的保真度显示出非单调依赖于系统-浴耦合以及偏压的扫描速率。然后,我们考虑施加反绝热驱动场的效果,发现该效果仅对于足够短的Landau-Zener过程可用于提高保真度。数值精确的结果表明,不同的反绝热驱动场对环境影响的鲁棒性可能非常不同。最后,通过案例研究,我们讨论了引入动态去耦场的可能性,以消除环境的退相干效应,同时保留反绝热场的积极作用。我们的工作表明,具有反绝热驱动作用的有限时间Landau-Zener过程为理解开放系统中的受控绝热过程提供了丰富的测试平台。

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