We report direct measurement of the dispersion relation of polaritons in GaAs/AlGaAs microcavity structures at room temperature, which clearly shows that the polaritons are in the strong coupling limit. The Rabi splitting of the polariton states decreases as the polariton gas increases in density, but even when the polariton gas becomes a coherent, Bose-condensate-like state, the polaritons retain a strong exciton component, as seen in the nonlinear energy shift of the light emission. This opens up the possibility of polaritonic devices at room temperature in a material system which can be grown with very high quality and uniformity.
@article{arxiv.2502.12338,
title = {Strong coupling of polaritons at room temperature in a GaAs/AlGaAs structure},
author = {Hassan Alnatah and Shuang Liang and Qiaochu Wan and Jonathan Beaumariage and Ken West and Kirk Baldwin and Loren N. Pfeiffer and Man Chun Alan Tam and Zbigniew R. Wasilewski and David W. Snoke},
journal= {arXiv preprint arXiv:2502.12338},
year = {2025}
}