论文标题

增强的热电性能是由通道区域的非弹性过程引起的

Enhanced thermoelectric performance actuated by inelastic processes in the channel region

论文作者

Singha, Aniket

论文摘要

我提出了一种设计策略,以通过吸收来自通道区域的热能来增强热发动机的性能。热能的吸收可以通过非弹性过程来促进,并且可以通过电子限制性流入通道来实现。提出的设计策略采用双能过滤器来通过接触通道接口注入和提取电子。第一个滤波器从热接触中注入压缩的电子,在高度低于通道温度的有效温度下。然后,注射电子的压缩流通过通道内部的非弹性散射吸收能量,并最终通过冷触点界面的第二个滤镜提取。严格的数学推导表明,针对拟议的设计策略的优化性能要求在电子注入端子和电子提取终端的单位端传输功能处实现盒车传输功能。数值模拟表明,在提出的设计策略中,与量子结合相比,当所需的输出功率较低时,在最佳条件下的热发动机性能会超过弹道限。所提出的概念可用于在可用热能的来源受到限制但与环境耗散隔离的情况下构建高效率热电发生器。

I propose a design strategy to enhance the performance of heat engine via absorption of thermal energy from the channel region. The absorption of thermal energy can be actuated by inelastic processes and may be accomplished by an energy restrictive flow of electrons into the channel. The proposed design strategy employs dual energy filters to inject and extract electrons through the contact to channel interface. The first filter injects a compressed stream of electrons from the hot contact, at an effective temperature much lower than the channel temperature. The compressed stream of injected electrons, then, absorb energy via inelastic scattering inside the channel and are finally extracted via a second filter at the cold contact interface. Rigorous mathematical derivations demonstrate that an optimized performance for the proposed design strategy demands the implementation of a box-car transmission function at the electron injecting terminal and a unit-step transmission function at the electron extracting terminal. Numerical simulation show that in the proposed design strategy, the heat engine performance, under optimal conditions, can surpass the ballistic limit when the required output power is low compared to the quantum bound. The proposed concept can be used to construct high efficiency thermoelectric generators in situations where the source of usable heat energy is limited, but insulated from environmental dissipation.

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