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09:30 |
DS 2.1 |
Strain activation of negatively charged boron vacancies in hexagonal boron nitride — •Xuankai Zhou, Jianpei Geng, Ruoming Peng, and Jörg Wrachtrup
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09:45 |
DS 2.2 |
Defect creation in hexagonal boron nitride by plasma treatment — •David Plitt, Felix Schaumburg, Timo Wagner, Martin Geller, Günther Prinz, Nicolas Wöhrl, and Axel Lorke
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10:00 |
DS 2.3 |
Exciton-exciton interactions in heterobilayers of transition-metal dichalcogenides — •Edith Wietek, Alexander Steinhoff, Matthias Florian, Tommy Schulz, Takashi Taniguchi, Kenji Watanabe, Shen Zhao, Alexander Högele, Frank Jahnke, and Alexey Chernikov
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10:15 |
DS 2.4 |
Dielectric Function and exciton dynamics of 2-dimensional MoS2 — •Lucas Krätschmer, Younes Slimi, Lukas Trefflich, Theo Pflug, Markus Olbrich, Noah Stiehm, Bernd Hähnlein, Sebastian Thiele, Chris Sturm, Alexander Horn, Marius Grundmann, Stefan Krischok, and Rüdiger Schmidt-Grund
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10:30 |
DS 2.5 |
Photo-induced charge and spin transfer in the heterostructure CrSBr/MoSe2 — •Andreas Beer, C. Serati de Brito, K. Zollner, P. E. Feria Junior, J. Fabian, H. S. J. van der Zant, Y. Galvao Gobato, and C. Schüller
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10:45 |
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15 min. break
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11:00 |
DS 2.6 |
Photo-electrochemical thinning of transition metal dichalcogenides — •Simon Wörle, Jeremy Robinson, Franz Gröbmeyer, Emiliano Cortes, and Ian Sharp
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11:15 |
DS 2.7 |
DFT-assisted Investigation of Defects in 2D WSe2 by High-Resolution STEM and Differential Phase Contrast Imaging — •Maja Groll, Julius Bürger, Ioannis Caltzidis, Klaus D. Jöns, Wolf Gero Schmidt, Uwe Gerstmann, and Jörg K. N. Lindner
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11:30 |
DS 2.8 |
Light-Matter coupling in Van der Waals heterostructures — •Bharti Parashar, Mathias Federolf, Atanu Patra, Vishakha Kaushik, and Sven Höfling
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11:45 |
DS 2.9 |
Large-area epitaxial growth and investigation of Fe5−xGeTe2/WSe2 van der Waals heterostructures — •Hua Lv, Michael Hanke, Jens Herfort, Achim Trampert, Roman Engel-Herbert, Chen Chen, Joan Redwing, Manfred Ramsteiner, and J Marcelo Lopes
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12:00 |
DS 2.10 |
multi-strategy coordination enables WSe2 to achieve high-performance real-world detection of NO2 — •Yu Duan, Sam Zhang, and Yong Lei
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