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Mesoscopic conductance fluctuations in graphene

机译:石墨烯的介观电导涨落

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摘要

We study fluctuations of the conductance of micron-sized graphene devices as a function of the Fermi energy and magnetic field. The fluctuations are studied in combination with analysis of weak localization which is determined by the same scattering mechanisms. It is shown that the variance of conductance fluctuations depends not only on inelastic scattering that controls dephasing but also on elastic scattering. In particular, contrary to its effect on weak localization, strong intervalley scattering suppresses conductance fluctuations in graphene. The correlation energy, however, is independent of the details of elastic scattering and can be used to determine the electron temperature of graphene structures.
机译:我们研究了微米级石墨烯器件的电导波动作为费米能量和磁场的函数。结合对弱局域的分析来研究波动,弱局域由相同的散射机制确定。结果表明,电导波动的方差不仅取决于控制去相的非弹性散射,还取决于弹性散射。特别是,与其对弱局域化的影响相反,强间隔散射抑制了石墨烯中的电导波动。然而,相关能与弹性散射的细节无关,可用于确定石墨烯结构的电子温度。

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