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Super-Planckian near-field thermal radiation between graphene-hBN heterostructures

机译:石墨烯-hBN异质结构之间的超普朗克近场热辐射

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In this work we give a theoretical investigation on the near-field heat transfer between two graphene-hexagonal boron nitride (hBN) heterostructures. We found that the phonon-plasmon hybrid modes supported by the heterostructure could broaden the frequency and wavevector ranges for near-field photon transfer and lead to a rather high near-field heat transfer efficiency that is far stronger than the usual Planckian radiation by several orders. The tunability of the Fermi level of graphene provides an advantage to actively mediate or control the heat transfer process, which may find important applications such as thermal management or thermal modulation.
机译:在这项工作中,我们对两个石墨烯-六方氮化硼(hBN)异质结构之间的近场热传递进行了理论研究。我们发现异质结构支持的声子-等离子体激元混合模式可以拓宽近场光子传递的频率和波矢范围,并导致相当高的近场传热效率,比普通普朗克辐射强度高出好几个数量级。 。石墨烯的费米能级的可调性提供了主动介导或控制传热过程的优势,这可能会发现重要的应用,例如热管理或热调制。

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