Permanent Rabi oscillations in coupled exciton-photon systems with PT -symmetry

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Abstract

We propose a physical mechanism which enables permanent Rabi oscillations in driven-dissipative condensates of exciton-polaritons in semiconductor microcavities subjected to external magnetic fields. The method is based on stimulated scattering of excitons from the incoherent reservoir. We demonstrate that permanent non-decaying oscillations may appear due to the parity-time symmetry of the coupled exciton-photon system realized in a specific regime of pumping to the exciton state and depletion of the reservoir. At non-zero exciton-photon detuning, robust permanent Rabi oscillations occur with unequal amplitudes of exciton and photon components. Our predictions pave way to realization of integrated circuits based on exciton-polariton Rabi oscillators.

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Chestnov, I. Y., Demirchyan, S. S., Alodjants, A. P., Rubo, Y. G., & Kavokin, A. V. (2016). Permanent Rabi oscillations in coupled exciton-photon systems with PT -symmetry. Scientific Reports, 6. https://doi.org/10.1038/srep19551

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