2026/03/11 by Rashed Aljasmi, Hisham Sati, Hichem Eleuch
Physics and Astronomy · Engineering · #Strong Light-Matter Interactions #Photonic Crystals and Applications #Plasmonic and Surface Plasmon Research
paper · pdf · doi:10.1016/j.chaos.2026.118218
We investigate a coherently driven exciton–photon microcavity with Kerr nonlinearity in the ultrastrong-coupling regime. When the lower and upper polariton branches are well separated in energy, the full Hopfield–Rabi–Kerr model reduces to an effective single-mode description of the lower polariton. We analyze the stability of the lower-polariton steady states. We show that the resulting bistability is qualitatively similar to that in the strong-coupling regime. However, in the ultrastrong-coupling regime counter-rotating processes and the diamagnetic A 2 term renormalize the polariton spectrum and composition, changing the effective detuning Δ ̃ 1 and nonlinearity U LP g -dependency beyond the strong-coupling (RWA) picture. As a result, although the semiclassical bistability criterion keeps its standard Kerr-oscillator form, the turning points and hysteresis window are shifted relative to the strong-coupling prediction.