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首页> 外文期刊>Physical Review, B. Condensed Matter >Electronic relaxation in embedded few-atom systems
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Electronic relaxation in embedded few-atom systems

机译:嵌入式少数原子系统中的电子弛豫

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We consider electronic relaxation in a small sample embedded in a host material that is held at thermal equilibrium. In our model description, the coupling of the sample electrons with the surrounding environment is mediated by the local vibrational modes in the sample region. Due to their coupling with the environment, these modes have a finite lifetime. The evolution of the electronic configuration with time is determined by studying the evolution of a density matrix, which is restricted to the electronic and vibrational degrees of freedom in the sample region. The thermalization of an excited electron is described using an iterative procedure. We present results for a single electron in a loop structure, where the electrons are coupled either to an ensemble of decoupled harmonic oscillators or to the acoustical phonons of the loop. [References: 28]
机译:我们考虑嵌入保持在热平衡状态的主体材料中的小样品中的电子弛豫。在我们的模型描述中,样品电子与周围环境的耦合是由样品区域中的局部振动模式来介导的。由于它们与环境的耦合,这些模式的寿命有限。通过研究密度矩阵的演化来确定电子结构随时间的演化,该密度矩阵受限于样品区域中的电子和振动自由度。使用迭代过程描述了激发电子的热化过程。我们介绍了单个电子在环路结构中的结果,其中电子耦合到解耦谐波振荡器的整体或环路的声子。 [参考:28]

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