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09:30 |
HL 18.1 |
Can Ge and Si be optoelectronic materials: Hexagonal polytypes — •Martin Keller, Abderrezak Belabbes, Jürgen Furthmüller, Friedhelm Bechstedt, and Silvana Botti
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09:45 |
HL 18.2 |
The contribution has been withdrawn.
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10:00 |
HL 18.3 |
Polarized Raman scattering study of epitaxially grown GeSn layers with various Sn content — •Agnieszka Anna Corley-Wiciak, Omar Concepción, Marvin Hartwig Zoellner, Detlev Grützmacher, Dan Buca, Giovanni Capellini, and Davide Spirito
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10:15 |
HL 18.4 |
Eigenmodes and Polarization Structure of Coupled Elliptical Microcavities — •Johannes Düreth, Simon Betzold, Monika Emmerling, Antonina Bieganowska, Jürgen Ohmer, Utz Fischer, Sven Höfling, and Sebastian Klembt
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10:30 |
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15 min. break
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10:45 |
HL 18.5 |
Optical properties of AgxCu1-xI alloy thin films — •E. Krüger, M. Seifert, V. Gottschalch, H. Krautscheid, C.S. Schnohr, S. Botti, M. Grundmann, and C. Sturm
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11:00 |
HL 18.6 |
Multipole theory of optical spatial dispersion in crystals — •Óscar Pozo
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11:15 |
HL 18.7 |
Predicting bandgap in strain-engineered multinary III-V semiconductors — •Badal Mondal and Ralf Tonner-Zech
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11:30 |
HL 18.8 |
GeSn vertical p/n photodetectors formed by 2-step ion implantation — •Shuyu Wen, Saif Shaikh, Oliver Steuer, Yonder Berencen, Slawomir Prucnal, and Shengqiang Zhou
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11:45 |
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15 min. break
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12:00 |
HL 18.9 |
Interplay between strain, Sn content and temperature in GeSn-based optoelectronic devices — •Ignatii Zaitsev, Agnieszka A. Corley-Wiciak, Dan Buca, Omar Concepción, Michele Virgilio, Giovanni Capellini, Costanza L. Manganelli, and Davide Spirito
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12:15 |
HL 18.10 |
Excitons in MoS2 bilayers under pressure — •Jan-Hauke Graalmann, Paul Steeger, Robert Schmidt, Steffen Michaelis de Vasconcellos, Rudolf Bratschitsch, and Michael Rohlfing
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12:30 |
HL 18.11 |
Optical properties of a vacancy-related complex in 4H-SiC — •Maximilian Schober, Nicolas Jungwirth, Takuma Kobayashi, Johannes A. F. Lehmeyer, Michael Krieger, Heiko B. Weber, and Michel Bockstedte
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12:45 |
HL 18.12 |
Defects or Dots -- what semiconductor physics can bring into optical super-resolution imaging — •Philipp Kellner, Jana Sütterlin, Paul Konrad, Andreas Sperlich, and Christian Eggeling
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