Critical transition of thermal rectification on complex networks

Kezhao Xiong, Man Zhou, Wei Liu, C. Zeng, Zheng-xin Yan
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Abstract

Thermal rectification is a mechanism that controls the direction of heat conduction, allowing it to flow freely in one direction and hindering it in the opposite direction. In this study, we propose a heat conduction model on a complex network where the node masses are non-uniformly distributed according to mi∼kiα. Our findings show that the existence of a critical point, α=1, determines the working mode of thermal rectification. For α>1, the working mode of thermal rectification is positive, whereas for α<1, the working mode is negative. Additionally, we discovered that this critical transition is a general phenomenon and does not vary with changes in network size, average degree, or degree distribution. By conducting theoretical analyses based on phonon spectra, we also identified the physical mechanism of the critical transition. These results provide a new approach to implement and enrich thermal diodes, opening up new possibilities for more efficient thermal management.
复杂网络中热整流的临界过渡
热整流是一种控制热传导方向的机制,它允许热传导在一个方向上自由流动,而阻碍热传导在相反方向上流动。在这项研究中,我们提出了一个复杂网络上的热传导模型,其中节点质量根据mi ~ kiα非均匀分布。研究结果表明,临界点α=1的存在决定了热整流的工作模式。当α>1时,热整流的工作模式为正,当α<1时,工作模式为负。此外,我们发现这种关键转变是一种普遍现象,不随网络规模、平均程度或程度分布的变化而变化。通过基于声子谱的理论分析,我们还确定了临界跃迁的物理机制。这些结果为实现和丰富热二极管提供了一种新的方法,为更有效的热管理开辟了新的可能性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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