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带隙石墨烯中的动态极化、屏蔽和等离激元

Dynamical polarization, screening, and plasmons in gapped graphene.

作者信息

Pyatkovskiy P K

机构信息

Physics Department, Kyiv National Taras Shevchenko University, Academician Glushkov Avenue 2, Kyiv, 03127, Ukraine.

出版信息

J Phys Condens Matter. 2009 Jan 14;21(2):025506. doi: 10.1088/0953-8984/21/2/025506. Epub 2008 Dec 10.

Abstract

The one-loop polarization function of graphene has been calculated at zero temperature for arbitrary wavevector, frequency, chemical potential (doping), and band gap. The result is expressed in terms of elementary functions and is used to find the dispersion of the plasmon mode and the static screening within the random phase approximation. At long wavelengths the usual square root behaviour of plasmon spectra for two-dimensional (2D) systems is obtained. The presence of a small (compared to a chemical potential) gap leads to the appearance of a new undamped plasmon mode. At greater values of the gap this mode merges with the long-wavelength one, and vanishes when the Fermi level enters the gap. The screening of charged impurities at large distances differs from that in gapless graphene by slower decay of Friedel oscillations (1/r(2) instead of 1/r(3)), similarly to conventional 2D systems.

摘要

石墨烯的单圈极化函数已在零温度下针对任意波矢、频率、化学势(掺杂)和带隙进行了计算。结果以初等函数表示,并用于在随机相位近似内找到等离激元模式的色散和静态屏蔽。在长波长下,获得了二维(2D)系统等离激元光谱通常的平方根行为。存在一个小的(与化学势相比)带隙会导致出现一种新的无阻尼等离激元模式。在更大的带隙值时,该模式与长波长模式合并,并在费米能级进入带隙时消失。与传统二维系统类似,大距离处带电杂质的屏蔽与无带隙石墨烯中的屏蔽不同,弗里德尔振荡的衰减较慢(1/r²而不是1/r³)。

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