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首页> 外文期刊>The European physical journal, B. Condensed matter physics >Active control of near-field radiative heat transfer via multiple coupling of surface waves with graphene plasmon
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Active control of near-field radiative heat transfer via multiple coupling of surface waves with graphene plasmon

机译:通过用石墨烯等离子体的表面波的多耦合近场辐射传热的主动控制

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摘要

It is known that the surface plasmons (SPs) supported by graphene can be strongly coupled with electric SPs supported by the metamaterial and with symmetric and antisymmetric surface phonon polaritons (SPhPs) supported by silicon carbide (SiC). It has been shown that coated SiC thin films can efficiently enhance near-field radiative heat transfer between metamaterials. In this study, we theoretically investigate near-field heat transfer between graphene-SiC-graphene-metamaterial (GSGM) multilayer structures. The heat transfer between GSGM structures is significantly larger than that between SiC-coated metamaterials when the chemical potential of graphene is not very high. Moreover, the structure proposed in this study behaves much better than the previous SiC/graphene/metamaterial in enhancing the near-field radiative heat transfer. The findings in this study provide a basis for active controlling of near-field radiative heat transfer.
机译:众所周知,由石墨烯支撑的表面等离子体(SPS)可以强烈地与由超材料支撑的电动SP和由碳化硅(SiC)支撑的对称和反对称表面声子极谱(SPHP)的电动SP耦合。 已经表明,涂覆的SiC薄膜可以有效地增强超材料之间的近场辐射热传递。 在这项研究中,我们从理论上研究了石墨烯-SiC-石墨烯 - 超材料(GSGM)多层结构之间的近场热传递。 当石墨烯的化学电位不是很高时,GSGM结构之间的热传递显着大于SiC涂覆的超材料之间的热传递。 此外,本研究中提出的结构比先前的SiC /石墨烯/超材料在增强近场辐射热传递方面的表现得多。 该研究中的研究结果为主动控制近场辐射传热提供了基础。

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