Phase diagram of twisted bilayer graphene at filling factor
ν = ± 3
暂无分享,去创建一个
N. Regnault | O. Vafek | Fang Xie | B. Bernevig | Jian Kang
[1] T. Taniguchi,et al. Chern insulators, van Hove singularities and topological flat bands in magic-angle twisted bilayer graphene , 2021, Nature Materials.
[2] Kenji Watanabe,et al. Correlation-driven topological phases in magic-angle twisted bilayer graphene , 2021, Nature.
[3] Kenji Watanabe,et al. Symmetry-broken Chern insulators and Rashba-like Landau-level crossings in magic-angle bilayer graphene , 2020, Nature Physics.
[4] Kenji Watanabe,et al. Hofstadter subband ferromagnetism and symmetry-broken Chern insulators in twisted bilayer graphene , 2020, Nature Physics.
[5] Kenji Watanabe,et al. Nematicity and competing orders in superconducting magic-angle graphene , 2020, Science.
[6] A. Vishwanath,et al. Charged skyrmions and topological origin of superconductivity in magic-angle graphene , 2020, Science Advances.
[7] Kenji Watanabe,et al. Flavour Hund’s coupling, Chern gaps and charge diffusivity in moiré graphene , 2020, Nature.
[8] Kenji Watanabe,et al. Isospin Pomeranchuk effect in twisted bilayer graphene , 2020, Nature.
[9] Kenji Watanabe,et al. Strongly correlated Chern insulators in magic-angle twisted bilayer graphene , 2020, Nature.
[10] Kenji Watanabe,et al. Untying the insulating and superconducting orders in magic-angle graphene , 2020, Nature.
[11] S. Sachdev,et al. Superconductivity, correlated insulators, and Wess–Zumino–Witten terms in twisted bilayer graphene , 2020, Proceedings of the National Academy of Sciences.
[12] Xiaodong Xu,et al. Superconductivity without insulating states in twisted bilayer graphene stabilized by monolayer WSe$_2$ , 2020, 2002.03003.
[13] Kenji Watanabe,et al. Cascade of electronic transitions in magic-angle twisted bilayer graphene , 2019, Nature.
[14] Y. Oreg,et al. Cascade of phase transitions and Dirac revivals in magic-angle graphene , 2019, Nature.
[15] Kenji Watanabe,et al. Independent superconductors and correlated insulators in twisted bilayer graphene , 2019, Nature Physics.
[16] J. Zhu,et al. Intrinsic quantized anomalous Hall effect in a moiré heterostructure , 2019, Science.
[17] Kenji Watanabe,et al. Spectroscopic signatures of many-body correlations in magic-angle twisted bilayer graphene , 2019, Nature.
[18] Kenji Watanabe,et al. Charge order and broken rotational symmetry in magic-angle twisted bilayer graphene , 2019, Nature.
[19] Kenji Watanabe,et al. Superconductors, orbital magnets and correlated states in magic-angle bilayer graphene , 2019, Nature.
[20] T. Taniguchi,et al. Phonon scattering dominated electron transport in twisted bilayer graphene , 2019, 1902.00763.
[21] M. Kastner,et al. Emergent ferromagnetism near three-quarters filling in twisted bilayer graphene , 2019, Science.
[22] G. Refael,et al. Author Correction: Electronic correlations in twisted bilayer graphene near the magic angle , 2019, Nature Physics.
[23] D. Graf,et al. Tuning superconductivity in twisted bilayer graphene , 2018, Science.
[24] Quansheng Wu,et al. Non-Abelian band topology in noninteracting metals , 2018, Science.
[25] Takashi Taniguchi,et al. Unconventional superconductivity in magic-angle graphene superlattices , 2018, Nature.
[26] E. Kaxiras,et al. Correlated insulator behaviour at half-filling in magic-angle graphene superlattices , 2018, Nature.
[27] G. Barkema,et al. Structure of twisted and buckled bilayer graphene , 2016, 1611.01000.
[28] M. Katsnelson,et al. Relaxation of moiré patterns for slightly misaligned identical lattices: graphene on graphite , 2015, 1503.02540.
[29] R. Bistritzer,et al. Moiré bands in twisted double-layer graphene , 2010, Proceedings of the National Academy of Sciences.