QI 6: Quantum Information: Concepts and Methods
Dienstag, 6. September 2022, 09:30–13:00, H9
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09:30 |
QI 6.1 |
Hauptvortrag:
Towards an Artificial Muse for new Ideas in Quantum Physics — •Mario Krenn
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10:00 |
QI 6.2 |
Learning variable quantum processes — Marco Fanizza, Yihui Quek, and •Matteo Rosati
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10:15 |
QI 6.3 |
The contribution has been moved to QI 10.3.
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10:30 |
QI 6.4 |
Quantum Convolutional Neural Network as a Phase Detection Circuit on the Toric Code — •Leon Sander, Nathan McMahon, and Michael Hartmann
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10:45 |
QI 6.5 |
Evaluating the power and performance of sigmoid quantum perceptrons. — •Samuel Wilkinson and Michael Harman
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11:00 |
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15 min. break
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11:15 |
QI 6.6 |
An algorithm to factorize quantum walks into shift and coin operations — •Christopher Cedzich, Tobias Geib, and Reinhard F. Werner
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11:30 |
QI 6.7 |
Improved Bell state measurement — •Simone D'Aurelio, Matthias Bayerbach, and Stefanie Barz
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11:45 |
QI 6.8 |
Preparation of maximally entangled states with digital-analog quantum computing — •Nicola Wurz, Julia Lamprich, Manish Thapa, Vicente Pina Canelles, Stefan Pogorzalek, Antti Vepsäläinen, Miha Papic, Jayshankar Nath, Florian Vigneau, Daria Gusenkova, Ping Yang, Hermanni Heimonen, Hsiang-Sheng Ku, Adrian Auer, Johannes Heinsoo, Frank Deppe, and Inés de Vega
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12:00 |
QI 6.9 |
Momentum-Space Entanlgement and the Wilsonian Effective Action — •Matheus Henrique Martins Costa, Gastao Inacio Krein, Flavio de Souza Nogueira, and Jeroen van den Brink
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12:15 |
QI 6.10 |
Holographic code in the laboratory — •Gerard Anglès Munné, Valentin Kasper, and Felix Huber
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12:30 |
QI 6.11 |
Universal ground state entanglement entropy in strongly biased bipartite systems — •Ohad Shpielberg
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12:45 |
QI 6.12 |
Fiber communication with collective quantum measurements: a machine learning perspective with applications — •Matteo Rosati and Janis Nötzel
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