Linear wave dynamics explains observations attributed to dark-solitons in a polariton quantum fluid
Optics
2014-09-22 v2 Quantum Gases
Abstract
We investigate the propagation and scattering of polaritons in a planar GaAs microcavity in the linear regime under resonant excitation. The propagation of the coherent polariton wave across an extended defect creates phase and intensity patterns with identical qualitative features previously attributed to dark and half-dark solitons of polaritons. We demonstrate that these features are observed for negligible nonlinearity (i.e., polariton-polariton interaction) and are, therefore, not sufficient to identify dark and half-dark solitons. A linear model based on the Maxwell equations is shown to reproduce the experimental observations.
Cite
@article{arxiv.1401.1128,
title = {Linear wave dynamics explains observations attributed to dark-solitons in a polariton quantum fluid},
author = {P. Cilibrizzi and H. Ohadi and T. Ostatnicky and A. Askitopoulos and W. Langbein and P. Lagoudakis},
journal= {arXiv preprint arXiv:1401.1128},
year = {2014}
}
Comments
Article + Supplementary Information (tot. 18 pages)