1 citations · 3 across the 3 of their papers we have counts for
4 papers
Quantum Monte Carlo study of magnetism and chiral d+id-wave superconductivity in twisted bilayer graphene
Shi-Chao Fang, Xin-Yi Liao
We employ a large-scale, unbiased constrained-path quantum Monte Carlo method to systematically simulate the effective two-orbital Hubbard model for twisted bilayer graphene in ord…
Superconductivity, nematicity, and charge density wave in high-Tc cuprates: A common thread
Zhong-Bing Huang, Shi-Chao Fang, Hai-Qing Lin
To address the issues of superconducting and charge properties in high-T cuprates, we perform a quantum Monte Carlo study of an extended three-band Emery model, which explicitl…
Electric field-induced chiral d+id superconducting state in AA-stacked bilayer graphene: A quantum Monte Carlo study
Shi-Chao Fang, Yan Zhang, Xiaojun Zheng +2
Using constrained-path quantum Monte Carlo method, we systematically study the Hubbard model on AA-stacked honeycomb lattices with electric field. Our simulation demonstrates a dom…
Interplay between nematic fluctuation and superconductivity in the two-orbital Hubbard model: A quantum Monte Carlo study
Guangkun Liu, Shichao Fang, Xiaojun Zheng +2
To understand the interplay between nematic fluctuation and superconductivity in iron-based superconductors, we performed a systematic study of the realistic two-orbital Hubbard mo…