Coexistence of photonic and atomic Bose-Einstein condensates in ideal atomic gases

We have studied conditions of photon Bose-Einstein condensate formation that is in thermodynamic equilibrium with ideal gas of two-level Bose atoms below the degeneracy temperature. Equations describing thermodynamic equilibrium in the system were formulated; critical temperatures and densities of p...

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Published in:Condensed Matter Physics
Main Authors: N. Boichenko, Yu. Slyusarenko
Format: Article
Language:English
Published: Yukhnovskii Institute for Condensed Matter Physics of the National Academy of Sciences of Ukraine 2015-12-01
Subjects:
Online Access:http://dx.doi.org/10.5488/CMP.18.43002
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author N. Boichenko
Yu. Slyusarenko
author_facet N. Boichenko
Yu. Slyusarenko
author_sort N. Boichenko
collection DOAJ
container_title Condensed Matter Physics
description We have studied conditions of photon Bose-Einstein condensate formation that is in thermodynamic equilibrium with ideal gas of two-level Bose atoms below the degeneracy temperature. Equations describing thermodynamic equilibrium in the system were formulated; critical temperatures and densities of photonic and atomic gas subsystems were obtained analytically. Coexistence conditions of these photonic and atomic Bose-Einstein condensates were found. There was predicted the possibility of an abrupt type of photon condensation in the presence of Bose condensate of ground-state atoms: it was shown that the slightest decrease of the temperature could cause a significant gathering of photons in the condensate. This case could be treated as a simple model of the situation known as "stopped light" in cold atomic gas. We also showed how population inversion of atomic levels can be created by lowering the temperature. The latter situation looks promising for light accumulation in atomic vapor at very low temperatures.
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spelling doaj-e898614ac37f4d01952a1da97e2bf70e2025-11-03T01:00:57ZengYukhnovskii Institute for Condensed Matter Physics of the National Academy of Sciences of UkraineCondensed Matter Physics1607-324X2015-12-011844300210.5488/CMP.18.43002Coexistence of photonic and atomic Bose-Einstein condensates in ideal atomic gasesN. Boichenko Yu. Slyusarenko We have studied conditions of photon Bose-Einstein condensate formation that is in thermodynamic equilibrium with ideal gas of two-level Bose atoms below the degeneracy temperature. Equations describing thermodynamic equilibrium in the system were formulated; critical temperatures and densities of photonic and atomic gas subsystems were obtained analytically. Coexistence conditions of these photonic and atomic Bose-Einstein condensates were found. There was predicted the possibility of an abrupt type of photon condensation in the presence of Bose condensate of ground-state atoms: it was shown that the slightest decrease of the temperature could cause a significant gathering of photons in the condensate. This case could be treated as a simple model of the situation known as "stopped light" in cold atomic gas. We also showed how population inversion of atomic levels can be created by lowering the temperature. The latter situation looks promising for light accumulation in atomic vapor at very low temperatures.http://dx.doi.org/10.5488/CMP.18.43002 ideal gasesthermodynamic equilibriumBose-Einstein condensate of photonscoexistence of Bose-Einstein condensates
spellingShingle N. Boichenko
Yu. Slyusarenko
Coexistence of photonic and atomic Bose-Einstein condensates in ideal atomic gases
ideal gases
thermodynamic equilibrium
Bose-Einstein condensate of photons
coexistence of Bose-Einstein condensates
title Coexistence of photonic and atomic Bose-Einstein condensates in ideal atomic gases
title_full Coexistence of photonic and atomic Bose-Einstein condensates in ideal atomic gases
title_fullStr Coexistence of photonic and atomic Bose-Einstein condensates in ideal atomic gases
title_full_unstemmed Coexistence of photonic and atomic Bose-Einstein condensates in ideal atomic gases
title_short Coexistence of photonic and atomic Bose-Einstein condensates in ideal atomic gases
title_sort coexistence of photonic and atomic bose einstein condensates in ideal atomic gases
topic ideal gases
thermodynamic equilibrium
Bose-Einstein condensate of photons
coexistence of Bose-Einstein condensates
url http://dx.doi.org/10.5488/CMP.18.43002
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