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Erlangen 2022 – scientific programme

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Q: Fachverband Quantenoptik und Photonik

Q 5: Quantum Technologies I

Monday, March 14, 2022, 14:00–16:00, Q-H13

14:00 Q 5.1 Monolithic double resonant Bragg-Cavities for efficient Second Harmonic Generation in MoS2 and WS2Heiko Knopf, •Sai Shradha, Fatemeh Alsadat Abtahi, Gia Quyet Ngo, Emad Najafidehaghani, Antony George, Ulrike Schulz, Sven Schröder, and Falk Eilenberger
14:15 Q 5.2 Maximising qubit per node in a quantum memory node using silicon vacancy color center and isotope nuclear spin in 4H-SiC — •Shravan Kumar Parthasarathy, Roland Nagy, Berwian Patrick, and Birgit Kallinger
14:30 Q 5.3 Successful nanophotonic integration of silicon vacancy colour centres in silicon carbide — •Florian Kaiser, Charles Babin, Rainer Stöhr, Naoya Morioka, Tobias Linkewitz, Timo Steidl, Raphael Wörnle, Di Liu, Erik Hesselmeier, Vadim Vorobyov, Andrej Denisenko, Mario Hentschel, Christian Gobert, Patrick Berwian, Georgy V Astakhov, Wolfgang Knolle, Sridhar Majety, Saha Pranta, Marina Radulaski, Nguyen T Son, Jawad Ul-Hassan, and Jörg Wrachtrup
14:45 Q 5.4 Fiber-coupled plug-and-play heralded single-photon source based on Ti:LiNbO3 and polymer technology — •Christian Kießler, Harald Herrmann, Hauke Conradi, Moritz Kleinert, and Christine Silberhorn
15:00 Q 5.5 Engineering of Quantum Light with Space-Time Correlations — •Fabian Schlue, Marcello Massaro, Jano Gil López, Benjamin Brecht, Harald Herrmann, and Christine Silberhorn
15:15 Q 5.6 Coupling function from bath density of states — •Somayyeh Nemati, Carsten Henkel, and Janet Anders
15:30 Q 5.7 Quantum science and technology with small satellites — •Tobias Vogl, Sebastian Ritter, Josefine Krause, Mostafa Abasifard, Heiko Knopf, and Falk Eilenberger
15:45 Q 5.8 Near-infrared single photon detector with µHz dark count rateKatharina-Sophie Isleif and •ALPS Collaboration
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