Higher-order topological phases: A general principle of construction D Călugăru, V Juričić, B Roy Physical Review B 99 (4), 041301, 2019 | 220 | 2019 |
General construction and topological classification of crystalline flat bands D Călugăru, A Chew, L Elcoro, Y Xu, N Regnault, ZD Song, BA Bernevig Nature Physics 18 (2), 185-189, 2022 | 116 | 2022 |
Quantum textures of the many-body wavefunctions in magic-angle graphene KP Nuckolls, RL Lee, M Oh, D Wong, T Soejima, JP Hong, D Călugăru, ... Nature 620 (7974), 525-532, 2023 | 98* | 2023 |
Softening of a flat phonon mode in the kagome ScV6Sn6 A Korshunov, H Hu, D Subires, Y Jiang, D Călugăru, X Feng, ... Nature communications 14 (1), 6646, 2023 | 62 | 2023 |
Symmetric kondo lattice states in doped strained twisted bilayer graphene H Hu, G Rai, L Crippa, J Herzog-Arbeitman, D Călugăru, T Wehling, ... Physical review letters 131 (16), 166501, 2023 | 46 | 2023 |
Twisted symmetric trilayer graphene: Single-particle and many-body Hamiltonians and hidden nonlocal symmetries of trilayer moiré systems with and without displacement field D Călugăru, F Xie, ZD Song, B Lian, N Regnault, BA Bernevig Physical Review B 103 (19), 195411, 2021 | 45 | 2021 |
Twisted symmetric trilayer graphene. II. Projected Hartree-Fock study F Xie, N Regnault, D Călugăru, BA Bernevig, B Lian Physical Review B 104 (11), 115167, 2021 | 41 | 2021 |
Spectroscopy of twisted bilayer graphene correlated insulators D Călugăru, N Regnault, M Oh, KP Nuckolls, D Wong, RL Lee, A Yazdani, ... Physical review letters 129 (11), 117602, 2022 | 40 | 2022 |
: Phonon bands, localized flat-band magnetism, models, and chemical analysis Y Jiang, SB Lee, J Herzog-Arbeitman, J Yu, X Feng, H Hu, D Călugăru, ... Physical Review B 108 (23), 235127, 2023 | 37 | 2023 |
First-order synchronization transition in a large population of strongly coupled relaxation oscillators D Călugăru, JF Totz, EA Martens, H Engel Science advances 6 (39), eabb2637, 2020 | 31 | 2020 |
Generalized triple-component fermions: Lattice model, Fermi arcs, and anomalous transport S Nandy, S Manna, D Călugăru, B Roy Physical Review B 100 (23), 235201, 2019 | 26 | 2019 |
Kagome Materials I: SG 191, ScVSn. Flat Phonon Soft Modes and Unconventional CDW Formation: Microscopic and Effective Theory H Hu, Y Jiang, D Călugăru, X Feng, D Subires, MG Vergniory, C Felser, ... arXiv preprint arXiv:2305.15469, 2023 | 23 | 2023 |
Twisted bilayer graphene as topological heavy fermion: II. Analytical approximations of the model parameters D Călugăru, M Borovkov, LLH Lau, P Coleman, ZD Song, BA Bernevig Low Temperature Physics 49 (6), 640-654, 2023 | 21 | 2023 |
Dynamical correlations and order in magic-angle twisted bilayer graphene G Rai, L Crippa, D Călugăru, H Hu, F Paoletti, L de’Medici, A Georges, ... Physical Review X 14 (3), 031045, 2024 | 17 | 2024 |
Thermal spin dynamics of Kitaev magnets: Scattering continua and magnetic field induced phases within a stochastic semiclassical approach O Franke, D Călugăru, A Nunnenkamp, J Knolle Physical Review B 106 (17), 174428, 2022 | 12 | 2022 |
Kagome Materials II: SG 191: FeGe as a LEGO Building Block for the Entire 1: 6: 6 series: hidden d-orbital decoupling of flat band sectors, effective models and interaction … Y Jiang, H Hu, D Călugăru, C Felser, S Blanco-Canosa, H Weng, Y Xu, ... arXiv preprint arXiv:2311.09290, 2023 | 11 | 2023 |
The Thermoelectric Effect and Its Natural Heavy Fermion Explanation in Twisted Bilayer and Trilayer Graphene D Călugăru, H Hu, RL Merino, N Regnault, DK Efetov, BA Bernevig arXiv preprint arXiv:2402.14057, 2024 | 7 | 2024 |
Evidence of heavy fermion physics in the thermoelectric transport of magic angle twisted bilayer graphene RL Merino, D Calugaru, H Hu, J Diez-Merida, A Diez-Carlon, T Taniguchi, ... arXiv preprint arXiv:2402.11749, 2024 | 7 | 2024 |
Heavy Fermions as an Efficient Representation of Atomistic Strain and Relaxation in Twisted Bilayer Graphene J Herzog-Arbeitman, J Yu, D Călugăru, H Hu, N Regnault, O Vafek, ... arXiv preprint arXiv:2405.13880, 2024 | 6 | 2024 |
Topological heavy fermion principle for flat (narrow) bands with concentrated quantum geometry J Herzog-Arbeitman, J Yu, D Călugăru, H Hu, N Regnault, C Liu, O Vafek, ... arXiv preprint arXiv:2404.07253, 2024 | 5 | 2024 |