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Time-dependent photon heat transport through a mesoscopic Josephson device

机译:时间依赖于介于介于介于媒体信息的光子热传输

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The time-oscillating photon heat current through a dc voltage biased mesoscopic Josephson Junction (MJJ) has been investigated by employing the nonequilibrium Green's function approach. The Landauer-like formula of photon heat current has been derived in both of the Fourier space and its time-oscillating versions, where Coulomb interaction, self inductance, and magnetic flux take effective roles. Nonlinear behaviors are exhibited in the photon heat current due to the quantum nature of MJJ and applied external dc voltage. The magnitude of heat current decreases with increasing the external bias voltage, and subtle oscillation structures appear as the superposition of different photon heat branches. The overall period of heat current with respect to time is not affected by Coulomb interaction, however, the magnitude and phase of it vary considerably by changing the Coulomb interaction. (C) 2016 Elsevier Inc. All rights reserved.
机译:通过采用非QuibiRibium的功能方法,研究了通过DC电压偏置介质Josephse Josephse Josephse Josephse JoSephse JoSephse Josephse Josephse Emoncopon结(MJJ)的时间振荡光子热电流。 光子热电流的Landauer样式在傅立叶空间和其时间振荡版本中得出,其中库仑相互作用,自感和磁通量具有有效的作用。 由于MJJ的量子性质和应用外部直流电压,在光子热流中展出非线性行为。 随着外部偏置电压的增加,热电流的大小降低,并且微妙的振荡结构看起来是不同光子热分支的叠加。 相对于时间的热电流的整体周期不受库仑相互作用的影响,然而,它通过改变库仑相互作用而变化的幅度和相变化。 (c)2016年Elsevier Inc.保留所有权利。

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