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Amplitude control of a quantum state in a non-Hermitian Rice-Mele model driven by an external field

机译:由外场驱动的非Hermitian Rice-Mele模型中量子态的振幅控制

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In the Hermitian regime, the Berry phase is always a real number. It may be imaginary for a non-Hermitian system, which leads to amplitude amplification or attenuation of an evolved quantum state. We study the dynamics of the non-Hermitian Rice-Mele model driven by a time-dependent external field. The exact results show that it can have a full real spectrum for any value of the field. Several rigorous results are presented for the Berry phase with respect to the varying field. We demonstrate that the Berry phase is the same complex constant for any initial state in a single sub-band. Numerical simulation indicates that the amplitude control of a state can be accomplished by a quasiadiabatic process within a short time.
机译:在埃尔米特时期,贝里阶段始终是实数。对于非Hermitian系统,这可能是虚构的,这会导致量子态的放大或衰减。我们研究了非时米外部场驱动的非赫米特莱斯-梅勒模型的动力学。精确的结果表明,对于任何场值,它都可以具有完整的真实频谱。针对变化的领域,贝里阶段提出了一些严格的结果。我们证明,对于单个子带中的任何初始状态,贝里相位都是相同的复数常数。数值模拟表明,通过准绝热过程可在短时间内完成状态的振幅控制。

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