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SKM 2023 – wissenschaftliches Programm

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CPP: Fachverband Chemische Physik und Polymerphysik

CPP 15: 2D Materials II (joint session HL/CPP)

Montag, 27. März 2023, 15:00–18:15, POT 81

15:00 CPP 15.1 Twist- and gate-tunable valley splitting in TMDC/CrI3 heterostructures — •Klaus Zollner, Paulo E. Faria Junior, and Jaroslav Fabian
15:15 CPP 15.2 Giant Enhancement of Interlayer Exciton Luminescence in WSe2/WSe2/MoSe2 in Heterotrilayers. — •Chirag Palekar, Ching-Wen Shih, Imad Limame, Bárbara Rosa, and Stephan Reitzenstein
15:30 CPP 15.3 Photoluminescence tuning in hybrid devices of monolayer transition metal dichalcogenides and rylene dyes — •Theresa Kuechle, Gergely Knorr, Kalina Peneva, and Giancarlo Soavi
15:45 CPP 15.4 Coherence of interlayer exciton ensembles in MoSe2/WSe2 heterobilayers — •Christos Paspalides, Mirco Troue, Johannes Figueiredo, Lukas Sigl, Manuel Katzer, Malte Selig, Andreas Knorr, Ursula Wurstbauer, and Alexander Holleitner
  16:00 15 min. break
16:15 CPP 15.5 Theoretical description of interlayer excitons in TMD homobilayers — •Ruven Hübner, Alexander Steinhoff, and Matthias Florian
16:30 CPP 15.6 Raman signature of interlayer coupling and lattice dynamics in 2D TMDCs — •Yang Pan and Dietrich R. T. Zahn
16:45 CPP 15.7 Correlated states of moiré interlayer excitons in twisted transition metal dichalcogenide heterostructures — •Nils-Erik Schütte, Niclas Götting, Frederik Lohof, and Christopher Gies
17:00 CPP 15.8 Electronic structures of twisted bilayer graphene and tungsten diselenide investigated by transferable tight-binding-models — •Xiaoyu Liu, Stefan Blügel, and Hyun-Jung Kim
  17:15 15 min. break
17:30 CPP 15.9 Hauptvortrag: Time-resolved optical spectroscopy of 3R-stacked MoS2 — •Swarup Deb, Michael Kempf, Rico Schwartz, and Tobias Korn
18:00 CPP 15.10 Constructing minimal tight-binding models for twisted TMDC bilayers — •Michael Winter, Dominik Benner, and Tim Wehling
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