Orbital magnetization and self-rotation in correlated phases of twisted bilayer graphene receive substantial contributions from remote bands, requiring careful convergence in Hartree-Fock calculations.
Tuning superconductivity in twisted bilayer graphene
2 Pith papers cite this work. Polarity classification is still indexing.
2
Pith papers citing it
years
2026 2representative citing papers
DeepH-E3 machine learning predicts that twisting bilayer SrTiO3 flattens valence bands and enhances nonlinear optical responses (SHG, shift current) while leaving linear dielectric and spin Hall responses largely unchanged.
citing papers explorer
-
Contribution of remote bands to orbital magnetization in twisted bilayer graphene
Orbital magnetization and self-rotation in correlated phases of twisted bilayer graphene receive substantial contributions from remote bands, requiring careful convergence in Hartree-Fock calculations.
-
Deep-learning Hamiltonian reveals twist-tunable flat bands and nonlinear photocurrents in SrTiO3 moire bilayers
DeepH-E3 machine learning predicts that twisting bilayer SrTiO3 flattens valence bands and enhances nonlinear optical responses (SHG, shift current) while leaving linear dielectric and spin Hall responses largely unchanged.