Navarro Javier, Muga Juan Gonzalo, Pons Marisa
Department of Physical Chemistry, University of the Basque Country UPV/EHU, Apdo 644, Bilbao, Spain.
Department of Physical Chemistry, University of the Basque Country UPV/EHU, Apdo 644, Bilbao, Spain and EHU Quantum Center, University of the Basque Country UPV/EHU, 48940 Leioa, Spain.
Phys Rev E. 2023 Jun;107(6-1):064124. doi: 10.1103/PhysRevE.107.064124.
Heat rectifiers would facilitate energy management operations such as cooling or energy harvesting, but devices of practical interest are still missing. Understanding heat rectification at a fundamental level is key to helping us find or design such devices. The match or mismatch of the phonon band spectrum of device segments for forward or reverse temperature bias of the thermal baths at device boundaries was proposed as the mechanism behind rectification. However, no explicit theoretical relation derived from first principles had been found so far between heat fluxes and spectral matching. We study heat rectification in a minimalistic chain of two coupled ions. The fluxes and rectification can be calculated analytically. We propose a definition of the matching that sets an upper bound for the heat flux. In a regime where the device rectifies optimally, matching and flux ratios for forward and reverse configurations are found to be proportional. The results can be extended to a system of N particles in arbitrary traps with nearest-neighbor linear interactions.
热整流器将有助于诸如冷却或能量收集等能量管理操作,但目前仍缺少具有实际应用价值的器件。从根本层面理解热整流是帮助我们找到或设计此类器件的关键。器件边界处热浴正向或反向温度偏置时,器件各部分声子能带谱的匹配或不匹配被认为是整流背后的机制。然而,到目前为止,尚未发现从第一性原理推导出来的热通量与光谱匹配之间明确的理论关系。我们研究了由两个耦合离子组成的极简链中的热整流。通量和整流可以通过解析计算得出。我们提出了一种匹配的定义,该定义为热通量设定了一个上限。在器件整流效果最佳的状态下,发现正向和反向配置的匹配度和通量比是成比例的。这些结果可以扩展到具有最近邻线性相互作用的任意陷阱中的N粒子系统。