Photon Phase Shift at the Few-Photon Level and Optical Switching by a Quantum Dot in a Microcavity

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Abstract

We exploit the nonlinearity arising from the spin-photon interaction in an InAs quantum dot to demonstrate phase shifts of scattered light pulses at the single-photon level. Photon phase shifts of close to 90° are achieved using a charged quantum dot in a micropillar cavity. We also demonstrate a photon phase switch by using a spin-pumping mechanism through Raman transitions in an in-plane magnetic field. The experimental findings are supported by a theoretical model that explores the dynamics of the system. Our results demonstrate the potential of quantum-dot-induced nonlinearities for quantum information processing.

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Wells, L. M., Kalliakos, S., Villa, B., Ellis, D. J. P., Stevenson, R. M., Bennett, A. J., … Shields, A. J. (2019). Photon Phase Shift at the Few-Photon Level and Optical Switching by a Quantum Dot in a Microcavity. Physical Review Applied, 11(6). https://doi.org/10.1103/PhysRevApplied.11.061001

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