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Anomalous Joule law in the adiabatic dynamics of a quantum dot in contact with normal-metal and superconducting reservoirs

机译:与正常金属和超导储层接触的量子点绝热动力学的异常焦耳定律

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摘要

We formulate a general theory to study the time-dependent charge and energy transport of an adiabatically driven quantum dot in contact with normal and superconducting reservoirs at T = 0. This setup is a generalization of a quantum RC circuit, with capacitive components due to Andreev processes and induced pairing fluctuations, in addition to the conventional normal charge fluctuations. The dynamics for the dissipation of energy is ruled by a Joule law for four channels in parallel with the universal Biittiker resistance R_0 = e~2 /2h per channel. Two transport channels are associated with the two spin components of the usual charge fluctuations, while the other two are associated with electrons and holes due to pairing fluctuations. The latter leads to an "anomalous" component of the Joule law and takes place with a vanishing net current due to the opposite flows of electrons and holes.
机译:我们公式化了一个一般理论,以研究在T = 0时与绝热和超导储层接触的绝热驱动量子点的时变电荷和能量传输。此设置是量子RC电路的一般化,其电容成分归因于Andreev除了常规的正常电荷波动外,过程和诱导的配对波动。能量消耗的动力学是由焦耳定律决定的,这四个通道与通用Biittiker电阻R_0 = e〜2 / 2h并联。两个传输通道与通常电荷波动的两个自旋分量相关联,而另外两个与配对波动引起的电子和空穴相关。后者导致焦耳定律的“异常”分量,并且由于电子和空穴的相反流动而在净电流消失的情况下发生。

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  • 来源
    《Physical review. B, Condensed Matter And Materals Physics》 |2018年第4期|045404.1-045404.10|共10页
  • 作者

    Liliana Arrachea; Rosa Lopez;

  • 作者单位

    International Center for Advanced Studies, Escuela de Ciencia v Tecnologia, Universidad National de San Martin, 25 Avenida de Mayo v Francia, 1650 Buenos Aires, Argentina,Dahlem Center for Complex Quantum Systems and Fachbereich Physik, Freie Universitaet Berlin, 14195 Berlin, Germany;

    Institut de Fi'sica Interdisciplindria i de Sistemes Complexos (CSIC-UIB), 07122 Palma de Mallorca, Spain;

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