首页> 外文会议>Micro/Nanoscale Heat Transfer International Conference 2008 >PHONON THERMAL BOUNDARY CONDUCTANCE IN 1-D CHAINS: COMPARISON BETWEEN THE SEMICLASSICAL AND NONEQUILIBRIUM GREEN'S FUNCTIONFORMALISMS
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PHONON THERMAL BOUNDARY CONDUCTANCE IN 1-D CHAINS: COMPARISON BETWEEN THE SEMICLASSICAL AND NONEQUILIBRIUM GREEN'S FUNCTIONFORMALISMS

机译:一维链中的声子热边界传导:半经典格林函数与非均衡格林函数形式的比较

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摘要

Thermal boundary conductance (h_(BD)) across solid interfaces is a limiting factor in many applications, especially as characteristic length scales of devices are decreasing to the nanoscale. Accurate prediction of this interfacial energy transfer, however, is difficult. The most widely used model for h_(BD) prediction is the diffuse mismatch model (DMM), which considers the transmission of the incident phonon intensity across the interface for the case of thermal equilibrium between the two materials adjacent to the interface. This semi-classical model is limited by the equilibrium assumption, and breaks down for the case of two similar materials comprising the interface. Recently, the Nonequilibrium Green's Function (NEGF) formalism has been extended to phonon transport. The NEGF formalism is rooted in nonequilibrium transport theory, making it ideal to study energy transfer applications, especially in nanosystems where the concept of thermal equilibrium breaks down due to the small dimensions of the transport regions. The purpose of this paper is to derive, from first principles, the NEGF formalism of thermal conductance, and compare the assumptions of this formalism to the semi-classical DMM assumptions. The NEGF formalism is derived for two simple 1 -D examples, and the 1-D conductance and phonon transmission is calculated for a 1-D atomic chains of Si and compared to DMM calculations and experimental data.
机译:跨固体界面的热边界电导(h_(BD))在许多应用中是一个限制因素,尤其是随着器件的特征长度尺度减小到纳米尺度时。但是,很难准确预测这种界面能传递。用于h_(BD)预测的最广泛使用的模型是扩散失配模型(DMM),该模型考虑了在界面附近的两种材料之间达到热平衡的情况下,入射声子强度在界面上的传输。该半经典模型受均衡假设的限制,并且在构成界面的两种相似材料的情况下分解。最近,非平衡格林函数(NEGF)形式主义已扩展到声子传输。 NEGF形式主义扎根于非平衡输运理论,使其成为研究能量转移应用的理想之选,尤其是在纳米系统中,由于输运区域的尺寸小,热平衡的概念破裂了。本文的目的是从第一原理中得出热导的NEGF形式主义,并将该形式主义的假设与半经典DMM假设进行比较。 NEGF形式主义是针对两个简单的一维示例得出的,针对一维Si原子链计算了一维电导和声子传输,并将其与DMM计算和实验数据进行了比较。

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