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Ground state superconducting pair correlations in twisted bilayer graphene

机译:扭曲双层石墨烯中的地位超导对相关性

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Motivated by the recent novel electronic features extracted from the magic-angle graphene superlattices, we studied the ground state superconducting pairing correlations within the Hubbard model on a twisted bilayer honeycomb lattice. Using Constrained-Path Quantum Monte Carlo method, we found that the d + id pairing correlation dominates over other pairing patterns among various electron fillings and interaction strengths, and the effective pairing interaction was enhanced as the on-site Coulomb interaction increased. We further examined the effect of the nearest neighbor interaction V, and the effective pairing interaction with d + id pairing symmetry was also enhanced by either a repulsive or attractive interaction. Our intensive numerical results confirm the interaction driven superconductivity with a dominant d + id pairing symmetry in twisted bilayer graphene.
机译:由最近从魔法角石墨烯超晶格提取的最近的新型电子特征,我们研究了扭曲双层蜂窝晶格上的Hubbard模型内的地面状态超导配对相关性。 使用约束路径量子蒙特卡罗方法,我们发现D + ID配对相关性在各种电子填充和相互作用强度之间的其他配对模式中占据了其他配对图案,并且随着现场的库仑相互作用增加,增强了有效的配对相互作用。 我们进一步研究了最近的邻居相互作用V的效果,并且通过排斥或有吸引力的相互作用也增强了与D + ID配对对称性的有效配对相互作用。 我们的强化数值结果证实了与扭曲双层石墨烯中的主要D + ID配对对称的相互作用驱动的超导性。

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