Optically erasing disorder in semiconductor microcavities with dynamic nuclear polarization

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Abstract

The mean squared value of the photonic disorder is found to be reduced by a factor of 100 in a typical GaAs based microcavity when exposed to a circularly polarized continuous wave optical pump without any special spatial patterning. Resonant excitation of the cavity mode excites a spatially nonuniform distribution of spin-polarized electrons, which depends on the photonic disorder profile. Electrons transfer spin to nuclei via the hyperfine contact interaction, inducing a long-living Overhauser magnetic field able to modify the potential of exciton polaritons. © 2011 American Physical Society.

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APA

Liew, T. C. H., & Savona, V. (2011). Optically erasing disorder in semiconductor microcavities with dynamic nuclear polarization. Physical Review Letters, 106(14). https://doi.org/10.1103/PhysRevLett.106.146404

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