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Ballistic thermal rectification in asymmetricthree-terminal mesoscopic dielectric systems

机译:非对称三端子介观电介质系统中的弹道热整流

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摘要

By coupling a temperature probe to the asymmetric three-terminal mesoscopic dielectric system, ballistic thermal rectification at low temperature is analytically studied based on the Landauer formulation of transport theory. It is seen that thermal rectification is a purely quantum effect and the quantum statistics of phonons in thermal reservoirs is necessary. Moreover, when the phonon re-emits into the system from the temperature probe, energy changing is necessary to realize thermal rectification. Another necessary condition is the different asymmetries for phonons with different frequencies, which is reflected by the dependence of the ratio _RC(!)/_RL(!) on !, the phonon’s frequency, where _RC(!) and _RL(!) are respectively the transmission coefficients from two asymmetric terminals to the temperature probe. The analytical results areconfirmed by extensive numerical simulations.
机译:通过将温度探针耦合到不对称的三端介观介电体系,基于Landauer输运理论,对低温下的弹道热整流进行了分析研究。可以看出,热整流是纯粹的量子效应,储热器中声子的量子统计是必要的。此外,当声子从温度探头重新发射到系统中时,必须进行能量转换才能实现热整流。另一个必要条件是具有不同频率的声子的不对称性不同,这由声子频率_RC(!)/ _ RL(!)对声子频率的依赖关系来反映,其中_RC(!)和_RL(!)分别为从两个非对称端子到温度探头的传输系数。大量的数值模拟证实了分析结果。

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