On the Possibility of Bose-Einstein Condensation and the Superfluidity of Frenkel Excitons

The characteristic time of exciton relaxation due to phonons is estimated, and as it turns to be smaller than the exciton lifetime, it is concluded that Bose‐Einstein condensation is possible in the system of Frenkel excitons. It is further shown that kinematical interaction obtained in the Boson re...

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Veröffentlicht in:Physica status solidi. B. Basic research 1984-07, Vol.124 (1), p.235-239
Hauptverfasser: Šetrajčić, J. P., Kapor, D. V., Mirjanić, D.
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container_title Physica status solidi. B. Basic research
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creator Šetrajčić, J. P.
Kapor, D. V.
Mirjanić, D.
description The characteristic time of exciton relaxation due to phonons is estimated, and as it turns to be smaller than the exciton lifetime, it is concluded that Bose‐Einstein condensation is possible in the system of Frenkel excitons. It is further shown that kinematical interaction obtained in the Boson representation due to the Paulionic character of the excitonic operators, causes the superfluid excitation transfer through the crystal. [Russian Text Ignored].
doi_str_mv 10.1002/pssb.2221240125
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subjects Condensed matter: electronic structure, electrical, magnetic, and optical properties
Electron states
Exact sciences and technology
Excitons and related phenomena
Physics
title On the Possibility of Bose-Einstein Condensation and the Superfluidity of Frenkel Excitons
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