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首页> 外文期刊>Physics Letters, A >Friedel phase discontinuity and bound states in the continuum in quantum dot systems
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Friedel phase discontinuity and bound states in the continuum in quantum dot systems

机译:量子点系统连续体中的Friedel相不连续性和束缚态

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摘要

In this Letter we study the Friedel phase of the electron transport in two different systems of quantum dots which exhibit bound states in the continuum (BIC). The Friedel phase jumps abruptly in the energies of the BICs, which is associated to the vanishing width of these states, as shown by Friedrich and Wintgen in [H. Friedrich, D. Wintgen, Phys. Rev. A 31 (1985) 3964]. This odd behavior of the Friedel phase has consequences in the charge through the Friedel sum rule. Namely, if the energy of the BIC drops under the Fermi energy the charge changes abruptly in a unity. We show that this behavior closely relates to discontinuities in the conductance predicted for interacting quantum dot systems. (C) 2008 Elsevier B.V. All rights reserved.
机译:在这封信中,我们研究了两个不同量子点系统中电子传输的弗里德尔相,这些量子点在连续体(BIC)中显示出束缚态。弗里德尔相在BIC的能量中突然跳跃,这与这些状态的消失宽度有关,如弗里德里希和温特根在[H. Friedrich,D。Wintgen,物理学。 Rev A 31(1985)3964]。弗里德尔相的这种奇特行为通过弗里德尔和规则对电荷产生了影响。即,如果BIC的能量下降到费米能量以下,则电荷会突然变化为一个整体。我们表明,这种行为与相互作用的量子点系统预测的电导的不连续性密切相关。 (C)2008 Elsevier B.V.保留所有权利。

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