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09:30 |
TT 4.1 |
Toward electron lensing in graphene — Yi-Chen Tsai, Yu-En Wu, Chung-Ting Ke, and •Ming-Hao Liu
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09:45 |
TT 4.2 |
Non-collinear magnetism of flat bands in magic-angle twisted bilayer graphene — •Maxime Lucas, Arnaud Ralko, Andreas Honecker, and Guy Trambly de Laissardière
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10:00 |
TT 4.3 |
Quantum diffusion in twisted bilayer graphene — •Taher Rhouma and Guy Trambly de Laissardière
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10:15 |
TT 4.4 |
Quasiparticle Interference as a Probe of Electron’s Form Factor in Twisted Bilayer Graphene — D.-H.-Minh Nguyen, Francisco Guinea, and •Dario Bercioux
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10:30 |
TT 4.5 |
Charge neutrality phase diagram of twisted bilayer graphene from sign-free Monte Carlo simulations — •Johannes S. Hofmann, Jong Yeon Lee, Patrick Ledwith, Eslam Khalaf, Ashvin Vishwanath, and Erez Berg
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10:45 |
TT 4.6 |
Probing doping profiles in large-angle twisted bilayer graphene by Fabry-Perot interference — •Alina Mrenca-Kolasinska, Curtis McDowell, Thiti Taychatanapat, and Ming-Hao Liu
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11:00 |
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15 min. break
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11:15 |
TT 4.7 |
Theory for optical control of correlated states in moiré transition metal dichalcogenide heterostructures — •Haoyang Tian and Urban F.P. Seifert
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11:30 |
TT 4.8 |
Unveiling structural transitions in the van der Waals multiferroic CuCrP2S6 under pressure and temperature — •Swarnamayee Mishra, Gaston Garbarino, Alexander Mistonov, Steven Gebel, and Jochen Geck
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11:45 |
TT 4.9 |
Switching Magnetic Anisotropy by Chemical Substitution in Single Crystals of the 2D van der Waals System (Fe1−xNix)2P2S6 — •Yuliia Shemerliuk, Anja U. B. Wolter, Bernd Büchner, and Saicharan Aswartham
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12:00 |
TT 4.10 |
Tuning surface resonance states on black phosphorus — •Dongming Zhao, Byeongin Lee, Junho Bang, Claudia Felser, Jian-Feng Ge, and Doohee Cho
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12:15 |
TT 4.11 |
Quantifying Twist Angles in Cuprate Heterostructures with Anisotropic Raman Signatures — •Flavia Lo Sardo, Marina Esposito, Tommaso Confalone, Kornelius Nielsch, Nicola Poccia, and Haider Golam
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12:30 |
TT 4.12 |
Polaritonic near-field effects on the metal-to-insulator transition of the Hubbard model — •Paul Fadler, Marios Michael, Katharina Lenk, Michael Sentef, and Martin Eckstein
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