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Quantum hardware

Language of instruction angličtina, čeština
Code 480-4402
Abbreviation KH
Course title Quantum hardware
Coordinating department Department of Physics
Course coordinator Ing. Iva Tkáčová, Ph.D.

Summary

This subject provides a connection of interdisciplinary knowledge with their direct applications in quantum hardware construction, with focus on several most promising approaches (superconducting quantum computing, photonic quantum computing, ion trapping quantum computing). Graduates acquire a deeper understanding of physics of quantum computer principles, which help them to understand new discoveries in such a progressive research area.

Literature

NIELSEN, Michael A. a CHUANG, Isaac L. Quantum computation and quantum information. 10th anniversary edition. Cambridge, United Kingdom: Cambridge University Press, 2010. ISBN 978-1-10700-217-3.

DUARTE, F. J. Quantum optics for engineers. Boca Raton: CRC Press, Taylor & Francis Group, [2014]. ISBN 978-14-398-8853-7.

COHEN-TANNOUDJI, Claude; DUPONT-ROC, Jacques a GRYNBERG, Gilbert. Atom-photon interactions: basic processes and applications. Wiley science paperback series. New York: Wiley, 2007. ISBN: 978-3-527-61842-2 .

STANCIL, Daniel D. a Gregory T. BYRD. Principles of Superconducting Quantum Computers. Wiley, 2022. ISBN 9781119750727 .

LANGE, Wolfgang. Quantum Computing with Trapped Ions. Springer, New York, NY, 2012. ISBN 978-1-4614-1799-6 .

Advised literature

SCHLEICH, Wolfgang P. Quantum optics in phase space. Berlin: Wiley-VCH, c2001. ISBN 3-527-29435-X.

CHEN, Goong; CHURCH, David A Church; ENGLERT, Berthold-Georg; HENKEL, Carsten; ROHWEDDER, Bernd et al. Quantum Computing Devices Principles, Designs, and Analysis. 2. CRC Press, 2019. ISBN 9780367390372.