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首页> 外文期刊>Physical Review. B, Condensed Matter >Radiative heat transfer and nonequilibrium Casimir-Lifshitz force in many-body systems with planar geometry
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Radiative heat transfer and nonequilibrium Casimir-Lifshitz force in many-body systems with planar geometry

机译:用平面几何的许多身体系统中的辐射传热和非奎尔卡西米尔 - Lifshitz力

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摘要

A general theory of photon-mediated energy and momentum transfer in N-body planar systems out of thermal equilibrium is introduced. It is based on the combination of the scattering theory and the fluctuationalelectrodynamics approach in many-body systems. By making a Landauer-like formulation of the heat transfer problem, explicit formulas for the energy transmission coefficients between two distinct slabs as well as the self-coupling coefficients are derived and expressed in terms of the reflection and transmission coefficients of the single bodies. We also show how to calculate local equilibrium temperatures in such systems. An analogous formulation is introduced to quantify momentum transfer coefficients describing Casimir-Lifshitz forces out of thermal equilibrium. Forces at thermal equilibrium are readily obtained as a particular case. As an illustration of this general theoretical framework, we show on three-body systems how the presence of a fourth slab can impact equilibrium temperatures in heat-transfer problems and equilibrium positions resulting from the forces acting on the system.
机译:引入了热平衡中的N体平面系统中的光子介导的能量和动量转移的一般理论。它基于散射理论和许多体系中的波动电力学方法的组合。通过制造类似的传热问题的样权传递问题,在两个不同的板坯之间的能量透射系数以及自耦合系数之间的明确公式,并以单体的反射和透射系数来衍生并来。我们还展示了如何在这种系统中计算局部平衡温度。引入了一种类似的制剂以量化描述Casimir-Livhitz力的动量转移系数从热平衡中出来。作为特定情况,容易获得热平衡的力。作为这一普通理论框架的说明,我们在三体系上展示了第四板坯的存在如何影响传热问题中的平衡温度和由作用在系统上的力产生的均衡位置。

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  • 来源
    《Physical Review. B, Condensed Matter》 |2017年第20期|205404.1-205404.18|共18页
  • 作者单位

    Laboratoire Charles Fabry UMR 8501 Institut d’Optique CNRS Universite Paris-Saclay 2 Avenue Augustin Fresnel 91127 Palaiseau Cedex France;

    Laboratoire Charles Fabry UMR 8501 Institut d’Optique CNRS Universite Paris-Saclay 2 Avenue Augustin Fresnel 91127 Palaiseau Cedex France Universite de Sherbrooke Department of Mechanical Engineering Sherbrooke PQ J1K 2R1 Canada;

    Institut fuer Physik Carl von Ossietzky Universitaet D-26111 Oldenburg Germany;

    Laboratoire Charles Coulomb (L2C) UMR 5221 CNRS-Universite de Montpellier F- 34095 Montpellier France Institut Universitaire de France 1 rue Descartes F-75231 Paris Cedex 05 France;

    Laboratoire Charles Coulomb (L2C) UMR 5221 CNRS-Universite de Montpellier F- 34095 Montpellier France;

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