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Non-linear phonon Peltier effect in dissipative quantum dot systems

机译:耗散量子点系统中的非线性声子珀耳帖效应

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Solid state thermoelectric cooling is based on the electronic Peltier effect, which cools via an electronic heat current in the absence of an applied temperature gradient. In this work, we demonstrate that equivalently, a phonon Peltier effect may arise in the non-linear thermoelectric transport regime of a dissipative quantum dot thermoelectric setup described via Anderson-Holstein model. This effect leads to an electron induced phonon heat current in the absence of a thermal gradient. Utilizing the modification of quasi-equilibrium phonon distribution via charge induced phonon accumulation, we show that in a special case the polarity of the phonon heat current can be reversed so that setup can dump heat into the hotter reservoirs. In further exploring possibilities that can arise from this effect, we propose a novel charge-induced phonon switching mechanism that may be incited via electrostatic gating.
机译:固态热电冷却基于电子珀尔帖效应,该效应在没有施加温度梯度的情况下通过电子热流进行冷却。在这项工作中,我们证明,等效地,在通过安德森-霍尔斯坦模型描述的耗散量子点热电装置的非线性热电传输机制中,可能会出现声子珀耳帖效应。这种效应导致在没有热梯度的情况下产生电子感应的声子热电流。利用通过电荷诱导的声子积累对准平衡声子分布进行的修改,我们表明,在特殊情况下,声子热电流的极性可以颠倒,从而可以将热量倾泻到较热的储层中。在进一步探索这种效应可能产生的可能性时,我们提出了一种新型的电荷诱导的声子转换机制,该机制可能是通过静电门控引起的。

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