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dc.contributor.authorXuereb, Andre-
dc.contributor.authorSchnabel, Roman-
dc.contributor.authorHammerer, Klemens-
dc.date.accessioned2018-02-08T10:21:52Z-
dc.date.available2018-02-08T10:21:52Z-
dc.date.issued2011-
dc.identifier.citationXuereb, A., Schnabel, R., & Hammerer, K. (2011). Dissipative optomechanics in a Michelson-Sagnac interferometer. Physical Review Letters, 107(21), 213604.en_GB
dc.identifier.urihttps://www.um.edu.mt/library/oar//handle/123456789/26574-
dc.description.abstractDissipative optomechanics studies the coupling of the motion of an optical element to the decay rate of a cavity. We propose and theoretically explore a realization of this system in the optical domain, using a combined Michelson-Sagnac interferometer, which enables a strong and tunable dissipative coupling. Quantum interference in such a setup results in the suppression of the lower motional sideband, leading to strongly enhanced cooling in the non-sideband-resolved regime. With state-of-the-art parameters, groundstate cooling and low-power quantum-limited position transduction are both possible. The possibility of a strong, tunable dissipative coupling opens up a new route towards observation of such fundamental optomechanical effects as nonlinear dynamics. Beyond optomechanics, the suggested method can be readily transferred to other setups involving nonlinear media, atomic ensembles, or single atoms.en_GB
dc.description.sponsorshipThis work was funded by the Centre for Quantum Engineering and Space-Time Research (QUEST) at the Leibniz University Hannover.en_GB
dc.language.isoenen_GB
dc.publisherAmerican Physical Societyen_GB
dc.rightsinfo:eu-repo/semantics/openAccessen_GB
dc.subjectOptomechanicsen_GB
dc.subjectQuantum theoryen_GB
dc.subjectInterferometersen_GB
dc.titleDissipative optomechanics in a Michelson-Sagnac interferometeren_GB
dc.typearticleen_GB
dc.rights.holderThe copyright of this work belongs to the author(s)/publisher. The rights of this work are as defined by the appropriate Copyright Legislation or as modified by any successive legislation. Users may access this work and can make use of the information contained in accordance with the Copyright Legislation provided that the author must be properly acknowledged. Further distribution or reproduction in any format is prohibited without the prior permission of the copyright holder.en_GB
dc.description.reviewedpeer-revieweden_GB
dc.identifier.doi10.1103/PhysRevLett.107.213604-
dc.publication.titlePhysical Review Lettersen_GB
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