English

Exciton-polaritons gas as a nonequilibrium coolant

Mesoscale and Nanoscale Physics 2015-05-13 v2

Abstract

Using angle-resolved Raman spectroscopy, we show that a resonantly excited ground-state exciton-polariton fluid behaves like a nonequilibrium coolant for its host solid-state semiconductor microcavity. With this optical technique, we obtain a detailed measurement of the thermal fluxes generated by the pumped polaritons. We thus find a maximum cooling power for a cryostat temperature of 5050K and below where optical cooling is usually suppressed, and we identify the participation of an ultrafast cooling mechanism. We also show that the nonequilibrium character of polaritons constitutes an unexpected resource: each scattering event can remove more heat from the solid than would be normally allowed using a thermal fluid with normal internal equilibration.

Keywords

Cite

@article{arxiv.1412.2630,
  title  = {Exciton-polaritons gas as a nonequilibrium coolant},
  author = {Sebastian Klembt and Emilien Durupt and Sanjoy Datta and Thorsten Klein and Augustin Baas and Yoan Léger and Carsten Kruse and Detlef Hommel and Anna Minguzzi and Maxime Richard},
  journal= {arXiv preprint arXiv:1412.2630},
  year   = {2015}
}

Comments

5 pages, 3 figures + supplemental material