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Flexural Phonon Limited Phonon drag thermopower in Bilayer Graphene

机译:弯曲声音有限公地声音在双层石墨烯中拖曳热电器

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We investigate the phonon drag thermopower from flexural phonons as a function of electron temperature and carrier concentration in the Bloch-Gruneisen regime in non-strained bilayer graphene using Boltzmann transport equation approach. The flexural phonons are expected to be the major source of intrinsic scattering mechanism in unstrained bilayer graphene due to their large density. The flexural phonon modes dispersion relation is quadratic so these low energy flexural phonons abound at room temperature and as a result deform the bilayer graphene sheet in the out of plane direction and affects the transport properties. We also produce analytical result for phonon-drag thermopower from flexural phonons and find that phonon-drag thermopower depicts T~2 dependence on temperature and n~(-1) on carrier concentration.
机译:我们研究了使用Boltzmann运输方程方法在非应变双层石墨烯中的电子温度和载体浓度的弯曲声音从弯曲声音的函数。由于它们的密度大,预计弯曲声子将是未经训练的双层石墨烯中的内在散射机制的主要来源。弯曲声音模式色散关系是二次的,所以这些低能弯曲声子在室温下比比皆是,并且结果使双层石墨烯片在平面方向外变形并影响运输特性。我们还从弯曲声音产生声音拖动热电器的分析结果,并发现声音拖动热量描绘了对载体浓度的温度和N〜(-1)的T〜2依赖性。

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