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双层外延石墨烯中狄拉克费米子的热载流子弛豫

Hot carrier relaxation of Dirac fermions in bilayer epitaxial graphene.

作者信息

Huang J, Alexander-Webber J A, Janssen T J B M, Tzalenchuk A, Yager T, Lara-Avila S, Kubatkin S, Myers-Ward R L, Wheeler V D, Gaskill D K, Nicholas R J

机构信息

Department of Physics, University of Oxford, Clarendon Laboratory, Parks Road, Oxford OX1 3PU, UK.

出版信息

J Phys Condens Matter. 2015 Apr 29;27(16):164202. doi: 10.1088/0953-8984/27/16/164202. Epub 2015 Apr 2.

Abstract

Energy relaxation of hot Dirac fermions in bilayer epitaxial graphene is experimentally investigated by magnetotransport measurements on Shubnikov-de Haas oscillations and weak localization. The hot-electron energy loss rate is found to follow the predicted Bloch-Grüneisen power-law behaviour of T(4) at carrier temperatures from 1.4 K up to ∼100 K, due to electron-acoustic phonon interactions with a deformation potential coupling constant of 22 eV. A carrier density dependence n(e)(-1.5) in the scaling of the T(4) power law is observed in bilayer graphene, in contrast to the n(e)(-0.5) dependence in monolayer graphene, leading to a crossover in the energy loss rate as a function of carrier density between these two systems. The electron-phonon relaxation time in bilayer graphene is also shown to be strongly carrier density dependent, while it remains constant for a wide range of carrier densities in monolayer graphene. Our results and comparisons between the bilayer and monolayer exhibit a more comprehensive picture of hot carrier dynamics in graphene systems.

摘要

通过对舒布尼科夫-德哈斯振荡和弱局域化进行磁输运测量,对双层外延石墨烯中热狄拉克费米子的能量弛豫进行了实验研究。由于电子与声学声子相互作用,其形变势耦合常数为22电子伏特,发现在1.4开尔文至约100开尔文的载流子温度下,热电子能量损失率遵循预测的T(4)的布洛赫-格律恩森幂律行为。在双层石墨烯中观察到T(4)幂律标度中载流子密度依赖性为n(e)(-1.5),这与单层石墨烯中的n(e)(-0.5)依赖性相反,导致这两个系统之间能量损失率作为载流子密度函数的交叉。双层石墨烯中的电子-声子弛豫时间也显示出强烈的载流子密度依赖性,而在单层石墨烯中,在很宽的载流子密度范围内它保持不变。我们的结果以及双层和单层之间的比较展现了石墨烯系统中热载流子动力学更全面的图景。

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