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Thermal conductivity of twisted bilayer graphene

机译:扭曲的双层石墨烯的热导率

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We have investigated experimentally the thermal conductivity of suspended twisted bilayer graphene. The measurements were performed using an optothermal Raman technique. It was found that the thermal conductivity of twisted bilayer graphene is lower than that of monolayer graphene and the reference, Bernal stacked bilayer graphene in the entire temperature range examined (~300-700 K). This finding indicates that the heat carriers -phonons - in twisted bilayer graphene do not behave in the same manner as that observed in individual graphene layers. The decrease in the thermal conductivity found in twisted bilayer graphene was explained by the modification of the Brillouin zone due to plane rotation and the emergence of numerous folded phonon branches that enhance the phonon Umklapp and normal scattering. The results obtained are important for understanding thermal transport in two-dimensional systems.
机译:我们有实验研究热电导率的暂停扭曲的双分子层石墨烯。一个光热拉曼技术。扭曲的双分子层的导热系数石墨烯是低于单层石墨烯和参考,伯纳尔双分子层石墨烯在整个温度范围内检查(~ 300 - 700 K),这一发现表明,运营商声子热——扭曲的双分子层石墨烯的行为不以同样的方式观察到单个石墨烯层。中的热导率下降扭曲的双层石墨烯的解释由于平面修改布里渊区旋转和众多的折叠的出现声子分支,增强声子翻转和正常的散射。热传输重要的理解二维系统。

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