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

Bibliographic Details
Title: Collective state transitions of exciton-polaritons loaded into a periodic potential
Authors: Winkler, K., Egorov, O. A., Savenko, I. G., Ma, X., Estrecho, E., Gao, T., Müller, S., Kamp, M., Liew, T. C. H., Ostrovskaya, E. A., Höfling, S., Schneider, C.
Source: Phys. Rev. B 93, 121303 (2016)
Publication Year: 2015
Collection: Condensed Matter
Subject Terms: Condensed Matter - Mesoscale and Nanoscale Physics
More Details: We 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 confirm that polariton-phonon scattering is a key energy relaxation mechanism enabling transitions from the highly nonequilibrium polariton condensate in the gap to the ground band condensation for large pump powers.
Document Type: Working Paper
DOI: 10.1103/PhysRevB.93.121303
Access URL: http://arxiv.org/abs/1509.08820
Accession Number: edsarx.1509.08820
Database: arXiv
More Details
DOI:10.1103/PhysRevB.93.121303