Twisted Multilayer Graphene II: Structure, Transport, and Interactions
ORAL · MAR-X28 · ID: 3092785
Presentations
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Abstract Withdrawn
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Understanding lattice reconstruction in low-angle twisted Moiré superlattices
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Publication: [1] Y. Cao et al., Nature, vol. 556, no. 7699, pp. 43–50, 2018.<br>[2] N. N. Nam and M. Koshino, Phys. Rev. B, vol. 96, no. 7, p. 075311, 2017.<br>[3] H. Yoo et al., Nat. Mater., vol. 18, no. 5, pp. 448–453, 2019.<br>[4] C. Woods et al., Nat. Phys., vol. 10, no. 6, pp. 451–456, 2014.
Presenters
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Mukesh K Das
Institute for Functional Intelligent Materials, NUS Singapore; Department of Materials Science and Engineering, NUS Singapore
Authors
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Mukesh K Das
Institute for Functional Intelligent Materials, NUS Singapore; Department of Materials Science and Engineering, NUS Singapore
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Colin R Woods
Institute for Functional Intelligent Materials, NUS Singapore; Department of Materials Science and Engineering, NUS Singapore, National University of Singapore
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Nonlinear electrical transport unveils Fermi surface malleability in a moiré heterostructure
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Publication: 1. ''Nonlinear Electrical Transport Unveils Fermi Surface Malleability in a Moiré Heterostructure'', Datta et al. Nano Lett. 2024, 24, 31, 9520–9527.
Presenters
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Suvronil Datta
Indian Institute of Science, Bangalore
Authors
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Suvronil Datta
Indian Institute of Science, Bangalore
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Saisab Bhowmik
Indian Institute of Science Bangalore
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Harsh Varshney
IIT Kanpur, India
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Kenji Watanabe
National Institute for Materials Science, NIMS, Research Center for Functional Materials, National Institute for Materials Science, Research Center for Electronic and Optical Materials, National Institute for Materials Science, 1-1 Namiki, Tsukuba 305-0044, Japan, Research Center for Functional Materials, National Institute of Material Science, Tsukuba, Japan, National Institute of Materials Science, Advanced Materials Laboratory, National Institute for Materials Science
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Takashi Taniguchi
National Institute for Materials Science, International Center for Materials Nanoarchitectonics, National Institute for Materials Science, Research Center for Materials Nanoarchitectonics, National Institute for Materials Science, 1-1 Namiki, Tsukuba 305-0044, Japan, International Center for Materials Nanoarchitectonics, National Institute of Material Science, Tsukuba, Japan, Advanced Materials Laboratory, National Institute for Materials Science
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Amit Agarwal
IIT Kanpur, India
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U Chandni
Indian Institute of Science Bangalore
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Magic angle helical quadralayer graphene: Supermoiré-Induced higher Chern flat bands
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Presenters
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Manato Fujimoto
Harvard University
Authors
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Manato Fujimoto
Harvard University
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Naoto Nakatsuji
Osaka University
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Patrick J Ledwith
Harvard University
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Ashvin Vishwanath
Harvard University
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Abstract Withdrawn
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Title:Oral: Low-Energy Electromagnetic Response in Moiré Materials
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Publication: Is the low-energy optical absorption in correlated insulators controlled by<br>quantum geometry? <br>https://arxiv.org/pdf/2410.16352
Presenters
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Juan Felipe Mendez-Valderrama
Princeton University
Authors
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Juan Felipe Mendez-Valderrama
Princeton University
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Dan Mao
Cornell University, University of Zurich
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Debanjan Chowdhury
Cornell University
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Photocurrents as correlated phase indicators in twisted bilayer graphene
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Presenters
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Fernando Peñaranda
Donostia International Physics Center
Authors
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Fernando Peñaranda
Donostia International Physics Center
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Hector Ochoa
Columbia University
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Fernando de Juan
Donostia International Physics Center
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Many-Body Perturbation Theory for Moiré Systems: Symmetry-Breaking States in Twisted Bilayer Graphene
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Presenters
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Liangtao Peng
Washington University in St. Louis
Authors
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Liangtao Peng
Washington University in St. Louis
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Giovanni Vignale
University of Missouri, IFIM, NUS
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Shaffique Adam
Washington University, Washington University in St. Louis, Washington University St Louis
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Electron Collimation in Twisted Bilayer Graphene via Gate-Defined Moiré Barriers
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Publication: W. Ren, X. Zhang, Z. Zhu, M. Khan, K. Watanabe, T. Taniguchi, E. Kaxiras, M. Luskin, and K. Wang, Electron Collimation in Twisted Bilayer Graphene via Gate-Defined Moiré Barriers, Nano Lett. 24, 12508 (2024).
Presenters
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Wei Ren
University of Minnesota
Authors
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Wei Ren
University of Minnesota
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Xi Zhang
University of Minnesota, Georgia Institute of Technology
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Ziyan Zhu
Stanford University
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Moosa A Khan
University of Minnesota
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Kenji Watanabe
National Institute for Materials Science, NIMS, Research Center for Functional Materials, National Institute for Materials Science, Research Center for Electronic and Optical Materials, National Institute for Materials Science, 1-1 Namiki, Tsukuba 305-0044, Japan, Research Center for Functional Materials, National Institute of Material Science, Tsukuba, Japan, National Institute of Materials Science, Advanced Materials Laboratory, National Institute for Materials Science
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Takashi Taniguchi
National Institute for Materials Science, International Center for Materials Nanoarchitectonics, National Institute for Materials Science, Research Center for Materials Nanoarchitectonics, National Institute for Materials Science, 1-1 Namiki, Tsukuba 305-0044, Japan, International Center for Materials Nanoarchitectonics, National Institute of Material Science, Tsukuba, Japan, Advanced Materials Laboratory, National Institute for Materials Science
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Efthimios Kaxiras
Harvard University
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Mitchell Luskin
University of Minnesota
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Ke Wang
University of Minnesota
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Improving the understanding of moiré spatial structure and electronic transport properties
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Presenters
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Steven Tran
Stanford Institute for Materials & Energy Sciences, Stanford University, Stanford University
Authors
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Steven Tran
Stanford Institute for Materials & Energy Sciences, Stanford University, Stanford University
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Jan-Lucas Uslu
JARA-FIT and 2nd Institute of Physics, RWTH Aachen University
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Mihir Pendharkar
Stanford Institute for Materials & Energy Sciences, Stanford University, Stanford University
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Chaitrali Duse
Stanford Institute for Materials & Energy Sciences, Stanford University, Stanford University
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Qingrui Cao
Stanford Institute for Materials & Energy Sciences, Stanford University, Stanford University
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Aaron L Sharpe
Stanford Institute for Materials & Energy Sciences, Stanford University, Stanford University
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Joe Finney
Stanford University, Stanford Univ
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Marisa Hocking
Stanford Institute for Materials & Energy Sciences, Stanford University, Stanford University
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Nathan J Bittner
Independent Researcher
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Takashi Taniguchi
National Institute for Materials Science, International Center for Materials Nanoarchitectonics, National Institute for Materials Science, Research Center for Materials Nanoarchitectonics, National Institute for Materials Science, 1-1 Namiki, Tsukuba 305-0044, Japan, International Center for Materials Nanoarchitectonics, National Institute of Material Science, Tsukuba, Japan, Advanced Materials Laboratory, National Institute for Materials Science
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Kenji Watanabe
National Institute for Materials Science, NIMS, Research Center for Functional Materials, National Institute for Materials Science, Research Center for Electronic and Optical Materials, National Institute for Materials Science, 1-1 Namiki, Tsukuba 305-0044, Japan, Research Center for Functional Materials, National Institute of Material Science, Tsukuba, Japan, National Institute of Materials Science, Advanced Materials Laboratory, National Institute for Materials Science
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Marc Kastner
Stanford Institute for Materials & Energy Sciences, Stanford University, Stanford University
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Andrew J Mannix
Stanford Institute for Materials & Energy Sciences, Stanford University, Stanford University
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David Goldhaber-Gordon
Stanford Institute for Materials & Energy Sciences, Stanford University, Stanford University, Department of Physics, Stanford University
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Electron phonon coupling in the twisted bilayer graphene
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Publication: https://arxiv.org/abs/2407.11116
Presenters
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Yi-Jie Wang
Peking Univ
Authors
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Yi-Jie Wang
Peking Univ
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Geng-Dong Zhou
Peking University
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Biao Lian
Princeton university, Princeton University
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Zhi-Da Song
Peking University, Peking Univ
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Ground state properties of twisted multilayer graphene
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Publication: [1] A. Wania Rodrigues, M. Bieniek, P. Potasz, D. Miravet, R. Thomale, M. Korkusinski, and P. Hawrylak. Phys. Rev. B 109 (2024) <br>[2] A. Wania Rodrigues, M. Bieniek, D. Miravet, and P. Hawrylak. In preparation (2024)
Presenters
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Alina Wania Rodrigues
University of Ottawa
Authors
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Alina Wania Rodrigues
University of Ottawa
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Maciej Bieniek
Julius-Maximilians University of Wuerzburg
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Daniel Miravet
University of Ottawa
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Pawel Hawrylak
University of Ottawa
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Microscopic theory for electron-phonon coupling in twisted bilayer graphene
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Publication: Microscopic theory for electron-phonon coupling in twisted bilayer graphene<br>Z Zhu, TP Devereaux<br>arXiv:2407.03293
Presenters
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Ziyan Zhu
Stanford University
Authors
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Ziyan Zhu
Stanford University
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Thomas P Devereaux
Stanford University
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A self-consistent Hartree theory for lattice-relaxed magic-angle twisted bilayer graphene
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Publication: arXiv:2401.00498 (2024); arXiv:2404.17638
Presenters
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Shaffique Adam
Washington University, Washington University in St. Louis, Washington University St Louis
Authors
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Shaffique Adam
Washington University, Washington University in St. Louis, Washington University St Louis
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