Quantum optomechanics: State engineering, hybrid systems and dissipative coupling

Research output: Chapter in book/report/conference proceedingConference contributionResearchpeer review

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Original languageEnglish
Title of host publicationQuantum Information and Measurement, QIM 2012
Publication statusPublished - Dec 2012
EventQuantum Information and Measurement, QIM 2012 - Berlin, Germany
Duration: 19 Mar 201221 Mar 2012

Publication series

NameOptics InfoBase Conference Papers
ISSN (electronic)2162-2701

Abstract

Optomechanical systems are rapidly approaching the quantum regime. We show that mechanical systems can be efficiently interfaced to atoms, and how dissipative coupling can be achieved in a Michelson-Sagnac-Interferometer, giving rise to strong nonlinear dynamics.

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Quantum optomechanics: State engineering, hybrid systems and dissipative coupling. / Hammerer, Klemens.
Quantum Information and Measurement, QIM 2012. 2012. (Optics InfoBase Conference Papers).

Research output: Chapter in book/report/conference proceedingConference contributionResearchpeer review

Hammerer, K 2012, Quantum optomechanics: State engineering, hybrid systems and dissipative coupling. in Quantum Information and Measurement, QIM 2012. Optics InfoBase Conference Papers, Quantum Information and Measurement, QIM 2012, Berlin, Germany, 19 Mar 2012.
Hammerer, K. (2012). Quantum optomechanics: State engineering, hybrid systems and dissipative coupling. In Quantum Information and Measurement, QIM 2012 (Optics InfoBase Conference Papers).
Hammerer K. Quantum optomechanics: State engineering, hybrid systems and dissipative coupling. In Quantum Information and Measurement, QIM 2012. 2012. (Optics InfoBase Conference Papers).
Hammerer, Klemens. / Quantum optomechanics : State engineering, hybrid systems and dissipative coupling. Quantum Information and Measurement, QIM 2012. 2012. (Optics InfoBase Conference Papers).
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abstract = "Optomechanical systems are rapidly approaching the quantum regime. We show that mechanical systems can be efficiently interfaced to atoms, and how dissipative coupling can be achieved in a Michelson-Sagnac-Interferometer, giving rise to strong nonlinear dynamics.",
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Download

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