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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Two-level atom-field interaction: Exact master equations for non-Markovian dynamics, decoherence, and relaxation - art. no. 033821
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Two-level atom-field interaction: Exact master equations for non-Markovian dynamics, decoherence, and relaxation - art. no. 033821

机译:两级原子场相互作用:非马氏动力学,退相干和弛豫的精确主方程-艺术。没有。 033821

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摘要

We perform a first-principles derivation of the general master equation to study the non-Markovian dynamics of a two-level atom (2LA) interacting with an electromagnetic field (EMF). We use the influence functional method, which can incorporate the full back reaction of the field on the atom, while adopting Grassmannian variables for the 2LA and the coherent-state representation for the EMF. We find exact master equations for the cases of a free quantum field and a cavity field in the vacuum. In response to the search for mechanisms to preserve maximal coherence in quantum computations in ion trap prototypes, we apply these equations to analyze the decoherence of a 2LA in an EMF, and find that decoherence time is close to relaxation time. This is at variance with the claims by authors who studied the same system but used a different coupling model. We explain the source of difference and argue that, contrary to common belief, the EMF, when resonantly coupled to an atom, does not decohere it as efficiently as a bath does on a quantum Brownian particle. The master equations for non-Markovian dynamics derived here are expected to be useful for exploring new regimes of 2LAEMF interaction, which is becoming physically important experimentally. [References: 56]
机译:我们执行一般主方程的一阶原理推导,以研究与电磁场(EMF)相互作用的两能级原子(2LA)的非马尔可夫动力学。我们使用影响函数方法,该方法可以包含场对原子的完全反向反应,同时对2LA采用Grassmannian变量,对于EMF采用相干态表示。我们找到了真空中自由量子场和腔场的精确主方程。为了寻求在离子阱原型的量子计算中保持最大相干性的机制的响应,我们应用这些方程式分析了ELA中2LA的去相干性,发现去相干时间接近弛豫时间。这与研究相同系统但使用不同耦合模型的作者的主张不同。我们解释了差异的根源,并指出,与通常的看法相反,EMF在共振耦合到原子时,不能像浴在量子布朗粒子上那样有效地分解。预计这里导出的非马尔可夫动力学主方程对于探索2LAEMF相互作用的新机制将很有用,这在实验上变得越来越重要。 [参考:56]

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