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Bose-Einstein Condensation of Long-Lifetime Polaritons in Thermal Equilibrium

Author(s)
Liu, Gangqiang; Steger, Mark; Pfeiffer, Loren N.; West, Ken; Snoke, David W.; Sun, Yongbao; Wen, Patrick; Yoon, Yoseob; Nelson, Keith Adam; ... Show more Show less
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Abstract
The experimental realization of Bose-Einstein condensation (BEC) with atoms and quasiparticles has triggered wide exploration of macroscopic quantum effects. Microcavity polaritons are of particular interest because quantum phenomena such as BEC and superfluidity can be observed at elevated temperatures. However, polariton lifetimes are typically too short to permit thermal equilibration. This has led to debate about whether polariton condensation is intrinsically a nonequilibrium effect. Here we report the first unambiguous observation of BEC of optically trapped polaritons in thermal equilibrium in a high-Q microcavity, evidenced by equilibrium Bose-Einstein distributions over broad ranges of polariton densities and bath temperatures. With thermal equilibrium established, we verify that polariton condensation is a phase transition with a well-defined density-temperature phase diagram. The measured phase boundary agrees well with the predictions of basic quantum gas theory.
Date issued
2017-01
URI
http://hdl.handle.net/1721.1/109180
Department
Massachusetts Institute of Technology. Department of Chemistry
Journal
Physical Review Letters
Publisher
American Physical Society
Citation
Sun,Yongbao; Wen,Patrick ; Yoon, Yoseob; Liu,Gangqiang; Steger,Mark; Pfeiffer, Loren N.; West,Ken; Snoke,David W. and Nelson, Keith A. "Bose-Einstein Condensation of Long-Lifetime Polaritons in Thermal Equilibrium." Physical Review Letters 118, no. 016602 (January 2017): 1-6 © 2017 American Physical Society
Version: Final published version
ISSN
0031-9007
1079-7114

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