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Electron evolution around a repulsive dopant in a quantum wire: coherence effects

机译:电子在排斥掺杂剂在进化量子线:相干效应

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We present an analysis of the quantum processes involved in the electron evolution around a repulsive dopant in a quantum wire. The quantum electron behavior has been studied by using a Wigner function approach. The Wigner phase space description allows the treatment of both classical and quantum evolution in the same framework, enabling ease of highlighting the effects of coherence. While the former is governed by a force, which is the first derivative of the dopant potential, the latter accounts for the entire potential, namely all derivatives in the corresponding Taylor expansion take part in the interaction. This gives rise to processes of tunneling and non-locality of the action of the potential. The complicated interplay of these quantum effects with the boundary conditions associated with the wire affects the physical observables like electron and current densities and in particular can give rise to an increase of the total current.
机译:我们目前的分析量子过程参与电子围绕一个进化令人厌恶的掺杂剂在量子线。研究了使用电子的行为维格纳函数的方法。描述允许的治疗经典和量子进化一样框架,使易于突出相干性的影响。由一种力量,这是第一个导数的掺杂剂的潜力,后者占整个潜力,即所有衍生品在相应的泰勒展开式参与互动。隧道和非定域性的过程行动的潜力。这些量子效应的相互作用边界条件与线路有关影响物理观察喜欢电子和电流密度,特别是可以给总电流的增加。

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