Anomalies of a nonequilibrium spinor polariton condensate in a magnetic field

We observe a strong variation of the Zeeman splitting of exciton polaritons in microcavities when switching between the linear regime, the polariton lasing, and photon lasing regimes. In the polariton lasing regime the sign of Zeeman splitting changes compared to the linear regime, while in the phot...

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Veröffentlicht in:Physical review letters 2014-03, Vol.112 (9), p.093902-093902, Article 093902
Hauptverfasser: Fischer, J, Brodbeck, S, Chernenko, A V, Lederer, I, Rahimi-Iman, A, Amthor, M, Kulakovskii, V D, Worschech, L, Kamp, M, Durnev, M, Schneider, C, Kavokin, A V, Höfling, S
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container_end_page 093902
container_issue 9
container_start_page 093902
container_title Physical review letters
container_volume 112
creator Fischer, J
Brodbeck, S
Chernenko, A V
Lederer, I
Rahimi-Iman, A
Amthor, M
Kulakovskii, V D
Worschech, L
Kamp, M
Durnev, M
Schneider, C
Kavokin, A V
Höfling, S
description We observe a strong variation of the Zeeman splitting of exciton polaritons in microcavities when switching between the linear regime, the polariton lasing, and photon lasing regimes. In the polariton lasing regime the sign of Zeeman splitting changes compared to the linear regime, while in the photon lasing regime the splitting vanishes. We additionally observe an increase of the diamagnetic shift in the polariton lasing regime. These effects are explained in terms of the nonequilibrium "spin Meissner effect."
doi_str_mv 10.1103/PhysRevLett.112.093902
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source MEDLINE; American Physical Society Journals
subjects Electromagnetic Fields
Lasing
Magnetic fields
Meissner effect
Microcavities
Models, Theoretical
Optics and Photonics - methods
Photons
Polaritons
Quantum Theory
Semiconductors
Splitting
Switching
title Anomalies of a nonequilibrium spinor polariton condensate in a magnetic field
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