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Quantum Monte Carlo study of magnetic and superconducting properties of graphene

机译:石墨烯的磁性和超导性质的量子蒙特卡洛研究

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We apply quantum Monte Carlo technique to address the issue of high controllability of ferromagnetism in graphene and the issue of electron correlation driven superconductivity in graphene, by simulating the t - U - V Hubbard model on a honeycomb lattice. In the region of low electron band filling below the Van Hove singularity, the system shows a short-range ferromagnetic correlation, which is strengthened slightly by the on-site Coulomb interaction and markedly by the next nearest-neighbor hoping integral. The strong dependence of ferromagnetism on the electron band filling can be manipulated by applying electric gate voltage. For V=0 and close to the half filling, we find that pairing with d + id symmetry dominates pairing with extended-s symmetry. However, as the system size increases the long-range part of the d + id pairing correlation decreases and tends to vanish in the thermodynamic limit. An inclusion of nearest-neighbor interaction V, either repulsive or attractive, has a small effect on the extended-s pairing correlation, but strongly suppresses the d + id pairing correlation. Copyright (C) 2013 John Wiley & Sons, Ltd.
机译:通过在蜂窝晶格上模拟t-U-V Hubbard模型,我们应用量子蒙特卡洛技术来解决石墨烯中铁磁性的高可控性问题和石墨烯中电子相关性驱动的超导性问题。在Van Hove奇异点以下的低电子能带填充区域中,系统显示了短程铁磁相关性,其通过现场库仑相互作用得到了略微增强,并且通过下一个最近邻居的跳跃积分得到了显着增强。可以通过施加栅极电压来控制铁磁性对电子带填充的强烈依赖性。对于V = 0并接近半填充,我们发现与d + id对称性配对与对扩展s对称性的配对占主导。但是,随着系统大小的增加,d + id配对相关性的远程部分会减小,并且在热力学极限中趋于消失。排斥或吸引的最近邻交互作用V的包含对扩展s配对相关性影响很小,但强烈抑制了d + id配对相关性。版权所有(C)2013 John Wiley&Sons,Ltd.

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