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Scattering resonances and bound states for strongly interacting Rydberg polaritons

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2014

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American Physical Society (APS)
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Bienias, P., S. Choi, O. Firstenberg, M. F. Maghrebi, M. Gullans, M. D. Lukin, A. V. Gorshkov, and H. P. Büchler. 2014. “Scattering Resonances and Bound States for Strongly Interacting Rydberg Polaritons.” Phys. Rev. A 90 (5) (November). doi:10.1103/physreva.90.053804.

Abstract

We provide a theoretical framework describing slow-light polaritons interacting via atomic Rydberg states. The method allows us to analytically derive the scattering properties of two polaritons. We identify parameter regimes where polariton-polariton interactions are repulsive. Furthermore, in the regime of attractive interactions, we identify multiple two-polariton bound states, calculate their dispersion, and study the resulting scattering resonances. Finally, the two-particle scattering properties allow us to derive the effective low-energy many-body Hamiltonian. This theoretical platform is applicable to ongoing experiments.

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