Physics Department, University of Arizona, Tucson, AZ 85721, USA.
J Phys Condens Matter. 2013 Feb 27;25(8):082201. doi: 10.1088/0953-8984/25/8/082201. Epub 2013 Jan 23.
We construct a scattering theory of weakly nonlinear thermoelectric transport through sub-micron scale conductors. The theory incorporates the leading nonlinear contributions in temperature and voltage biases to the charge and heat currents. Because of the finite capacitances of sub-micron scale conducting circuits, fundamental conservation laws such as gauge invariance and current conservation require special care to be preserved. We do this by extending the approach of Christen and Büttiker (1996 Europhys. Lett. 35 523) to coupled charge and heat transport. In this way we write relations connecting nonlinear transport coefficients in a manner similar to Mott's relation between the linear thermopower and the linear conductance. We derive sum rules that nonlinear transport coefficients must satisfy to preserve gauge invariance and current conservation. We illustrate our theory by calculating the efficiency of heat engines and the coefficient of performance of thermoelectric refrigerators based on quantum point contacts and resonant tunneling barriers. We identify, in particular, rectification effects that increase device performance.
我们构建了一个亚微米尺度导体中弱非线性热电输运的散射理论。该理论包含了温度和电压偏置对电荷和热流的主要非线性贡献。由于亚微米尺度导电电路的有限电容,规范不变性和电流守恒等基本守恒定律需要特别注意才能得到保持。我们通过将 Christen 和 Büttiker(1996 年 Europhys. Lett. 35 523)的方法扩展到耦合电荷和热输运来实现这一点。通过这种方式,我们以类似于 Mott 关系中线性热电势与线性电导率之间的关系,以写连接非线性输运系数的关系。我们推导出非线性输运系数必须满足的求和规则,以保持规范不变性和电流守恒。我们通过计算基于量子点接触和共振隧穿势垒的热机的效率和热电制冷机的性能系数来说明我们的理论。我们特别确定了可以提高器件性能的整流效应。