Najafi M N, Nezhadhaghighi M Ghasemi
Department of Physics, University of Mohaghegh Ardabili, P. O. Box 179, Ardabil, Iran.
Department of Physics, College of Science, Shiraz University, Shiraz 71454, Iran.
Phys Rev E. 2017 Mar;95(3-1):032112. doi: 10.1103/PhysRevE.95.032112. Epub 2017 Mar 7.
We characterize the carrier density profile of the ground state of graphene in the presence of particle-particle interaction and random charged impurity in zero gate voltage. We provide detailed analysis on the resulting spatially inhomogeneous electron gas, taking into account the particle-particle interaction and the remote Coulomb disorder on an equal footing within the Thomas-Fermi-Dirac theory. We present some general features of the carrier density probability measure of the graphene sheet. We also show that, when viewed as a random surface, the electron-hole puddles at zero chemical potential show peculiar self-similar statistical properties. Although the disorder potential is chosen to be Gaussian, we show that the charge field is non-Gaussian with unusual Kondev relations, which can be regarded as a new class of two-dimensional random-field surfaces. Using Schramm-Loewner (SLE) evolution, we numerically demonstrate that the ungated graphene has conformal invariance and the random zero-charge density contours are SLE_{κ} with κ=1.8±0.2, consistent with c=-3 conformal field theory.
我们刻画了在零栅极电压下存在粒子 - 粒子相互作用和随机带电杂质时石墨烯基态的载流子密度分布。我们对由此产生的空间非均匀电子气进行了详细分析,在托马斯 - 费米 - 狄拉克理论框架内,平等考虑了粒子 - 粒子相互作用和远程库仑无序。我们展示了石墨烯片载流子密度概率测度的一些一般特征。我们还表明,当被视为一个随机表面时,零化学势下的电子 - 空穴 puddles 呈现出奇特的自相似统计特性。尽管无序势被选为高斯分布,但我们表明电荷场是非高斯的,具有不寻常的康德夫关系,这可被视为一类新的二维随机场表面。使用施拉姆 - 洛厄纳(SLE)演化,我们通过数值证明未加栅极的石墨烯具有共形不变性,并且随机零电荷密度轮廓是κ = 1.8±0.2 的SLEκ,这与 c = -3 的共形场论一致。