论文标题
导电和辐射传热之间的机械关系
Mechanical relations between conductive and radiative heat transfer
论文作者
论文摘要
我们提出了一个通用的非平衡绿色功能形式,用于在以线性响应为特征的系统中建模的传热作用形式,该系统响应建立了声子和辐射传导之间形式的代数关系,并揭示了前者的上限如何也可以应用于后者。我们还提出了这种形式主义的扩展,以治疗容易受到导电和辐射传热相互作用的系统,这些系统在原子系统和纳米和较小的分离中变得相关,在纳米系统和较小的分离中,分别处理每个现象的理论描述可能不足。我们通过为Carbyne电线的低维系统提供预测来说明对这种耦合描述的需求,在该系统中,总热传递与其辐射和导电贡献的总和可能不同。我们的框架有分析,以了解可能彼此直接接触的大物体之间的热传递,或者可能与原子,分子或界面膜连接在一起。
We present a general nonequilibrium Green's function formalism for modeling heat transfer in systems characterized by linear response that establishes the formal algebraic relationships between phonon and radiative conduction, and reveals how upper bounds for the former can also be applied to the latter. We also propose an extension of this formalism to treat systems susceptible to the interplay of conductive and radiative heat transfer, which becomes relevant in atomic systems and at nanometric and smaller separations where theoretical descriptions which treat each phenomenon separately may be insufficient. We illustrate the need for such coupled descriptions by providing predictions for a low-dimensional system of carbyne wires in which the total heat transfer can differ from the sum of its radiative and conductive contributions. Our framework has ramifications for understanding heat transfer between large bodies that may approach direct contact with each other or that may be coupled by atomic, molecular, or interfacial film junctions.