Dissipation-induced Tonks-Girardeau gas of polaritons

A scheme for the generation of a Tonks-Girardeau (TG) gas of polaritons with purely dissipative interaction is described. We put forward a master equation approach for the description of stationary light in atomic four-level media and show that, under suitable conditions, two-particle decays are the...

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Main Authors: Kiffner, M, Hartmann, M
Format: Journal article
Language:English
Published: 2010
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author Kiffner, M
Hartmann, M
author_facet Kiffner, M
Hartmann, M
author_sort Kiffner, M
collection OXFORD
description A scheme for the generation of a Tonks-Girardeau (TG) gas of polaritons with purely dissipative interaction is described. We put forward a master equation approach for the description of stationary light in atomic four-level media and show that, under suitable conditions, two-particle decays are the dominant photon loss mechanism. These dissipative two-photon losses increase the interaction strength by at least one order of magnitude as compared to dispersive two-photon processes and can drive the polaritons into the TG regime. Characteristic correlations of the TG gas, including quantities that distinguish it from free fermions, can be measured via standard quantum optical techniques. Our scheme thus allows one to feasibly generate highly correlated photon states, which can be of considerable use in quantum-information processing and precision measurements. © 2010 The American Physical Society.
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spelling oxford-uuid:d44e147f-cd1a-4418-bb44-e35599b7dc692022-03-27T08:17:32ZDissipation-induced Tonks-Girardeau gas of polaritonsJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:d44e147f-cd1a-4418-bb44-e35599b7dc69EnglishSymplectic Elements at Oxford2010Kiffner, MHartmann, MA scheme for the generation of a Tonks-Girardeau (TG) gas of polaritons with purely dissipative interaction is described. We put forward a master equation approach for the description of stationary light in atomic four-level media and show that, under suitable conditions, two-particle decays are the dominant photon loss mechanism. These dissipative two-photon losses increase the interaction strength by at least one order of magnitude as compared to dispersive two-photon processes and can drive the polaritons into the TG regime. Characteristic correlations of the TG gas, including quantities that distinguish it from free fermions, can be measured via standard quantum optical techniques. Our scheme thus allows one to feasibly generate highly correlated photon states, which can be of considerable use in quantum-information processing and precision measurements. © 2010 The American Physical Society.
spellingShingle Kiffner, M
Hartmann, M
Dissipation-induced Tonks-Girardeau gas of polaritons
title Dissipation-induced Tonks-Girardeau gas of polaritons
title_full Dissipation-induced Tonks-Girardeau gas of polaritons
title_fullStr Dissipation-induced Tonks-Girardeau gas of polaritons
title_full_unstemmed Dissipation-induced Tonks-Girardeau gas of polaritons
title_short Dissipation-induced Tonks-Girardeau gas of polaritons
title_sort dissipation induced tonks girardeau gas of polaritons
work_keys_str_mv AT kiffnerm dissipationinducedtonksgirardeaugasofpolaritons
AT hartmannm dissipationinducedtonksgirardeaugasofpolaritons