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Heat transfer between nanoparticles: Thermal conductance for near-field interactions

机译:纳米粒子之间的热传递:用于近场相互作用的热导

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摘要

We analyze the heat transfer between two nanoparticles separated by a distance lying in the near-field domain in which energy interchange is due to the Coulomb interactions. The thermal conductance is computed by assuming that the particles have charge distributions characterized by fluctuating multipole moments in equilibrium with heat baths at two different temperatures. This quantity follows from the fluctuation-dissipation theorem for the fluctuations of the multipolar moments. We compare the behavior of the conductance as a function of the distance between the particles with the result obtained by means of molecular dynamics simulations. The formalism proposed enables us to provide a comprehensive explanation of the marked growth of the conductance when decreasing the distance between the nanoparticles.
机译:我们分析了两个纳米粒子之间的热传递,该纳米粒子之间的距离位于近场域中,该距离之间的能量交换归因于库仑相互作用。通过假设粒子具有以两个不同温度下的热浴平衡而波动的多极矩为特征的电荷分布来计算热导。该量来自多极矩波动的波动耗散定理。我们将电导行为作为粒子之间距离的函数进行比较,并通过分子动力学模拟获得结果。提出的形式主义使我们能够提供当减小纳米粒子之间的距离时电导显着增长的全面解释。

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