QI 5: Implementations: Solid state systems
Dienstag, 6. September 2022, 09:30–12:15, H8
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09:30 |
QI 5.1 |
Hauptvortrag:
Towards universal quantum computation and simulation with NV centre in diamond — •Vadim Vorobyov
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10:00 |
QI 5.2 |
The contribution has been withdrawn.
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10:15 |
QI 5.3 |
Fidelities of quantum algorithms for a spin register in diamond in presence of magnetic impurities. — •Dominik Maile, Jürgen Stockburger, and Joachim Ankerhold
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10:30 |
QI 5.4 |
Nitrogen vacancy centers in diamond membranes coupled to an optical microcavity — •Maximilian Pallmann, Kerim Köster, Jonathan Körber, Julia Heupel, Rainer Stöhr, Timon Eichhorn, Larissa Kohler, Cyril Popov, and David Hunger
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10:45 |
QI 5.5 |
Cavity-free microwave spectral hole burning in 166Er:Y2SiO5 below 1K — Anton Mladenov, Natalia Pankratova, Dmitriy Sholokhov, Vladimir Manucharyan, Pavel Bushev, and •Nadezhda Kukharchyk
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11:00 |
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15 min. break
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11:15 |
QI 5.6 |
Modelling and engineering cQED devices via effective Hamiltonians — •Boxi Li, Tommaso Calarco, and Felix Motzoi
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11:30 |
QI 5.7 |
Demonstration of an integrated optomechanical microcavity with a suspended frequency-dependent photonic crystal reflector — •Sushanth Kini M, Anastasiia Ciers, Juliette Monsel, Cindy Peralle, Shu Min Wang, Philippe Tassin, and Witlef Wieczorek
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11:45 |
QI 5.8 |
Quantum reservoir computing with coupled cavity arrays — •Frederik Lohof, Niclas Götting, and Christopher Gies
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12:00 |
QI 5.9 |
Ultra-stable open micro-cavity platform for closed cycle cryostats — •Michael Förg, Jonathan Noé, Manuel Nutz, Theodor W. Hänsch, and Thomas Hümmer
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