首页> 外文期刊>The European physical journal, B. Condensed matter physics >Thermal boundary conductance across metal-nonmetal interfaces: effects of electron-phonon coupling both in metal and at interface
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Thermal boundary conductance across metal-nonmetal interfaces: effects of electron-phonon coupling both in metal and at interface

机译:跨金属-非金属界面的热边界电导:金属中和界面处电子-声子耦合的影响

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摘要

We theoretically investigate the thermal boundary conductance across metal-nonmetal interfaces in the presence of the electron-phonon coupling not only in metal but also at interface. The thermal energy can be transferred from metal to nonmetal via three channels: (1) the phonon-phonon coupling at interface; (2) the electron-phonon coupling at interface; and (3) the electron-phonon coupling within metal and then subsequently the phonon-phonon coupling at interface. We find that these three channels can be described by an equivalent series-parallel thermal resistor network, based on which we derive out the analytic expression of the thermal boundary conductance. We then exemplify different contributions from each channel to the thermal boundary conductance in three typical interfaces: Pb-diamond, Ti-diamond, and TiN-MgO. Our results reveal that the competition among above channels determines the thermal boundary conductance.
机译:我们从理论上研究了在电子-声子耦合存在下不仅在金属中而且在界面处存在的跨金属-非金属界面的热边界电导。热能可以通过三个通道从金属传递到非金属:(1)界面处的声子-声子耦合; (2)界面处的电子-声子耦合; (3)金属中的电子-声子耦合,然后是界面上的声子-声子耦合。我们发现这三个通道可以用等效的串联-并联热敏电阻网络描述,在此基础上我们可以得出热边界电导的解析表达式。然后,我们在三个典型的界面中举例说明了每个通道对热边界电导的不同贡献:Pb-金刚石,Ti-金刚石和TiN-MgO。我们的结果表明,上述通道之间的竞争决定了热边界电导。

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