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We introduce twisted trilayer graphene (tTLG) with two independent twist angles as an ideal system for the precise tuning of the electronic interlayer coupling to maximize the effect of correlated behaviors.
1907
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1908
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1908
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1910
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1910
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1911
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1912
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2003
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2003
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2004
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A. H. Castro Neto, F. Guinea, N. M. R. Peres, K. S. Novoselov, and A. K. Geim, “The electronic properties of graphene,” Reviews of Modern Physics 81
2009
Earlier work this paper cites.
A. H. Castro Neto, F. Guinea, N. M. R. Peres, K. S. Novoselov, and A. K. Geim, “The electronic properties of graphene,” Reviews of Modern Physics 81
2009
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Rafi Bistritzer and Allan H. MacDonald, “Moiré bands in twisted double-layer graphene,” Proceedings of the National Academy of Science 108
2011
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Rafi Bistritzer and Allan H. MacDonald, “Moiré bands in twisted double-layer graphene,” Proceedings of the National Academy of Science 108
2011
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Matthew Yankowitz, Jiamin Xue, Daniel Cormode, Javier D. Sanchez-Yamagishi, K. Watanabe, T. Taniguchi, Pablo Jarillo-Herrero, Philippe Jacquod, and Brian J. Leroy, “Emergence of superlattice Dirac points in graphene on hexagonal boron nitride,” Nature Physics 8
2012
Earlier work this paper cites.
Matthew Yankowitz, Jiamin Xue, Daniel Cormode, Javier D. Sanchez-Yamagishi, K. Watanabe, T. Taniguchi, Pablo Jarillo-Herrero, Philippe Jacquod, and Brian J. Leroy, “Emergence of superlattice Dirac points in graphene on hexagonal boron nitride,” Nature Physics 8
2012
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Shiang Fang and Efthimios Kaxiras, “Electronic structure theory of weakly interacting bilayers,” Phys. Rev. B 93
2016
Cited alongside, same era.
Stephen Carr, Daniel Massatt, Shiang Fang, Paul Cazeaux, Mitchell Luskin, and Efthimios Kaxiras, “Twistronics: Manipulating the electronic properties of two-dimensional layered structures through their twist angle,” Phys. Rev. B 95
2017
Cited alongside, same era.
Nguyen N. T. Nam and Mikito Koshino, “Lattice relaxation and energy band modulation in twisted bilayer graphene,” Phys. Rev. B 96
2017
Cited alongside, same era.
Stephen Carr, Daniel Massatt, Shiang Fang, Paul Cazeaux, Mitchell Luskin, and Efthimios Kaxiras, “Twistronics: Manipulating the electronic properties of two-dimensional layered structures through their twist angle,” Phys. Rev. B 95
2017
Cited alongside, same era.
Christophe Mora, Nicolas Regnault, and B. Andrei Bernevig, “Flatbands and Perfect Metal in Trilayer Moiré Graphene,” Phys. Rev. Lett. 123
2019
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Francisco Guinea and Niels R. Walet, “Continuum models for twisted bilayer graphene: Effect of lattice deformation and hopping parameters,” Phys. Rev. B 99
2019
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Gonçalo Catarina, Bruno Amorim, Eduardo V Castro, João MVP Lopes, and Nuno Peres, “Twisted bilayer graphene: Low-energy physics, electronic and optical properties,” Handbook of Graphene, Volume 3: Graphene-like 2D Materials , 177 (2019)
2019
Later among the works it cites.
Christophe Mora, Nicolas Regnault, and B. Andrei Bernevig, “Flatbands and Perfect Metal in Trilayer Moiré Graphene,” Phys. Rev. Lett. 123
2019
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Matthew Yankowitz, Jeil Jung, Evan Laksono, Nicolas Leconte, Bheema L. Chittari, K. Watanabe, T. Taniguchi, Shaffique Adam, David Graf, and Cory R. Dean, “Dynamic band-structure tuning of graphene moiré superlattices with pressure,” Nature (London) 557
2018
Cited alongside, same era.
Mikito Koshino, Noah F. Q. Yuan, Takashi Koretsune, Masayuki Ochi, Kazuhiko Kuroki, and Liang Fu, “Maximally Localized Wannier Orbitals and the Extended Hubbard Model for Twisted Bilayer Graphene,” Physical Review X 8
2018
Cited alongside, same era.
2018
Cited alongside, same era.
Daniel Massatt, Stephen Carr, Mitchell Luskin, and Christoph Ortner, “Incommensurate heterostructures in momentum space,” Multiscale Modeling & Simulation 16
2018
Cited alongside, same era.
Wei-Jie Zuo, Jia-Bin Qiao, Dong-Lin Ma, Long-Jing Yin, Gan Sun, Jun-Yang Zhang, Li-Yang Guan, and Lin He, “Scanning tunneling microscopy and spectroscopy of twisted trilayer graphene,” Physical Review B 97
2018
Cited alongside, same era.
2018
Cited alongside, same era.
Daniel Massatt, Stephen Carr, Mitchell Luskin, and Christoph Ortner, “Incommensurate heterostructures in momentum space,” Multiscale Modeling & Simulation 16
2018
Cited alongside, same era.
Wei-Jie Zuo, Jia-Bin Qiao, Dong-Lin Ma, Long-Jing Yin, Gan Sun, Jun-Yang Zhang, Li-Yang Guan, and Lin He, “Scanning tunneling microscopy and spectroscopy of twisted trilayer graphene,” Physical Review B 97
2018
Cited alongside, same era.
2019
Later among the works it cites.
Cheng Shen, Na Li, Shuopei Wang, Yanchong Zhao, Jian Tang, Jieying Liu, Jinpeng Tian, Yanbang Chu, Kenji Watanabe, Takashi Taniguchi, Rong Yang, Zi Yang Meng, Dongxia Shi, and Guangyu Zhang, “Correlated states in twisted double bilayer graphene,” Nature Physics 16
2020
Closest in time.
Xiaomeng Liu, Zeyu Hao, Eslam Khalaf, Jong Yeon Lee, Yuval Ronen, Hyobin Yoo, Danial Haei Najafabadi, Kenji Watanabe, Takashi Taniguchi, Ashvin Vishwanath, et al. , Nature 583
2020
Closest in time.
Yuan Cao, Daniel Rodan-Legrain, Oriol Rubies-Bigorda, Jeong Min Park, Kenji Watanabe, Takashi Taniguchi, and Pablo Jarillo-Herrero, “Electric Field Tunable Correlated States and Magnetic Phase Transitions in Twisted Bilayer-Bilayer Graphene,” Nature , 1–6 (2020)
2020
Closest in time.
Ziyan Zhu, Paul Cazeaux, Mitchell Luskin, and Efthimios Kaxiras, “Modeling mechanical relaxation in incommensurate trilayer van der waals heterostructures,” Phys. Rev. B 101
2020
Closest in time.
M. Anđelković, S. P. Milovanović, L. Covaci, and F. M. Peeters, “Double moiré with a twist: super-moiré in encapsulated graphene,” Nano Letters 20
2020
Closest in time.
N Leconte and J Jung, “Commensurate and incommensurate double moire interference in graphene encapsulated by hexagonal boron nitride,” 2D Materials 7
2020
Closest in time.
Stephen Carr, Chenyuan Li, Ziyan Zhu, Efthimios Kaxiras, Subir Sachdev, and Alexander Kruchkov, “Ultraheavy and ultrarelativistic dirac quasiparticles in sandwiched graphenes,” Nano Letters 20
2020
Closest in time.
Youngju Park, Bheema Lingam Chittari, and Jeil Jung, “Gate-tunable topological flat bands in twisted monolayer-bilayer graphene,” Phys. Rev. B 102
2020
Closest in time.
Ziyan Zhu, Carr Stephen, Massatt Daniel, Luskin Mitchell, and Kaxiras Efthimios, “Model for Twisted Trilayer Graphene: a precisely tunable platform for correlated electrons: https://github.com/ziyanzzhu/ttlg,” (2020)
2020
Closest in time.
Stephen Carr, Chenyuan Li, Ziyan Zhu, Efthimios Kaxiras, Subir Sachdev, and Alexander Kruchkov, “Ultraheavy and ultrarelativistic dirac quasiparticles in sandwiched graphenes,” Nano Letters 20
2020
Closest in time.