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Collective state transitions of exciton-polaritons loaded into a periodic potential

dc.contributor.authorWinkler, Karolen_AU
dc.contributor.authorEgorov, Oleg Aen_AU
dc.contributor.authorSchneider, Cen_AU
dc.contributor.authorMa, Xen_AU
dc.contributor.authorEstrecho, Eliezer (Eli)en_AU
dc.contributor.authorGao, Tinggeen_AU
dc.contributor.authorMüller, S.en_AU
dc.contributor.authorKamp, Martinen_AU
dc.contributor.authorLiew, T.C.H.en_AU
dc.contributor.authorHöfling, Sen_AU
dc.contributor.authorSavenko, I. G.en_AU
dc.contributor.authorOstrovskaya, Elenaen_AU
dc.date.accessioned2018-11-29T22:54:47Z
dc.date.available2018-11-29T22:54:47Z
dc.date.issued2016
dc.date.updated2018-11-29T08:02:35Z
dc.description.abstractWe study the loading of a nonequilibrium, dissipative system of composite bosons—exciton polaritons—into a one-dimensional periodic lattice potential. Utilizing momentum resolved photoluminescence spectroscopy, we observe a transition between an incoherent Bose gas and a polariton condensate, which undergoes further transitions between different energy states in the band-gap spectrum of the periodic potential with increasing pumping power. We demonstrate controlled loading into distinct energy bands by modifying the size and shape of the excitation beam. The observed effects are comprehensively described in the framework of a nonequilibrium model of polariton condensation. In particular, we implement a stochastic treatment of quantum and thermal fluctuations in the system and conclude that polariton-phonon scattering is a plausible energy relaxation mechanism enabling transitions from the highly nonequilibrium polariton condensate in the gap to the ground band condensation for large pump powers.
dc.format.mimetypeapplication/pdfen_AU
dc.identifier.issn1098-0121
dc.identifier.urihttp://hdl.handle.net/1885/152921
dc.publisherAmerican Physical Society
dc.sourcePhysical Review B: Condensed Matter and Materials
dc.titleCollective state transitions of exciton-polaritons loaded into a periodic potential
dc.typeJournal article
dcterms.accessRightsOpen Accessen_AU
local.bibliographicCitation.issue12
local.contributor.affiliationWinkler, Karol, Universitat Wurzburg
local.contributor.affiliationEgorov, Oleg A, Friedrich Schiller University
local.contributor.affiliationSchneider, C, University of Würzburg
local.contributor.affiliationMa, X, Friedrich-Schiller-Universitat Jena
local.contributor.affiliationEstrecho, Eliezer (Eli), College of Science, ANU
local.contributor.affiliationGao, Tingge, College of Science, ANU
local.contributor.affiliationMüller, S., Universität Würzburg
local.contributor.affiliationKamp, Martin, University of Wurzburg
local.contributor.affiliationLiew, T.C.H., Nanyang Technological University
local.contributor.affiliationOstrovskaya, Elena, College of Science, ANU
local.contributor.affiliationHöfling, S, University of St. Andrews
local.contributor.affiliationSavenko, I. G., ITMO University
local.contributor.authoruidEstrecho, Eliezer (Eli), u5644644
local.contributor.authoruidGao, Tingge, u5702624
local.contributor.authoruidOstrovskaya, Elena, u9510052
local.description.notesImported from ARIES
local.identifier.absfor020500 - OPTICAL PHYSICS
local.identifier.absfor020600 - QUANTUM PHYSICS
local.identifier.ariespublicationU3488905xPUB11767
local.identifier.citationvolume93
local.identifier.doi10.1103/PhysRevB.93.121303
local.identifier.scopusID2-s2.0-84960843526
local.identifier.thomsonID000371739900001
local.type.statusPublished Version

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