Dan Mao
Dan Mao
Bethe/KIC fellow, Cornell University
Verified email at
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Nearly flat Chern bands in moiré superlattices
YH Zhang, D Mao, Y Cao, P Jarillo-Herrero, T Senthil
Physical Review B 99 (7), 075127, 2019
Twisted bilayer graphene aligned with hexagonal boron nitride: anomalous Hall effect and a lattice model
YH Zhang, D Mao, T Senthil
Physical Review Research 1 (3), 033126, 2019
Quantum phase transitions between bosonic symmetry-protected topological states without sign problem: Nonlinear sigma model with a topological term
YZ You, Z Bi, D Mao, C Xu
Physical Review B 93 (12), 125101, 2016
Exciton-driven antiferromagnetic metal in a correlated van der Waals insulator
CA Belvin, E Baldini, IO Ozel, D Mao, HC Po, CJ Allington, S Son, BH Kim, ...
Nature communications 12 (1), 4837, 2021
Quasiperiodicity, band topology, and moiré graphene
D Mao, T Senthil
Physical Review B 103 (11), 115110, 2021
Spin liquids and pseudogap metals in the SU (4) Hubbard model in a moiré superlattice
YH Zhang, D Mao
Physical Review B 101 (3), 035122, 2020
Magnetically brightened dark electron-phonon bound states in a van der Waals antiferromagnet
E Ergeçen, B Ilyas, D Mao, HC Po, MB Yilmaz, J Kim, JG Park, T Senthil, ...
Nature Communications 13 (1), 98, 2022
Slow scrambling and hidden integrability in a random rotor model
D Mao, D Chowdhury, T Senthil
Physical Review B 102 (9), 094306, 2020
Entanglement in one-dimensional critical state after measurements
Z Yang, D Mao, CM Jian
arXiv preprint arXiv:2301.08255, 2023
Diamagnetic response and phase stiffness for interacting isolated narrow bands
D Mao, D Chowdhury
arXiv preprint arXiv:2209.06817, 2022
Strongly Correlated 2D Electronic Systems: Interplay between Band Topology and Electron-electron Interaction
D Mao
Massachusetts Institute of Technology, 2021
Upper bounds on superconducting and excitonic phase-stiffness for interacting isolated narrow bands
D Mao, D Chowdhury
arXiv preprint arXiv:2304.07318, 2023
Fractionalization in Fractional Correlated Insulating States at filled twisted bilayer graphene
D Mao, K Zhang, EA Kim
arXiv preprint arXiv:2211.11622, 2022
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