Antiferromagnetic phase transition in a nonequilibrium lattice of Rydberg atoms

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Abstract

We study a driven-dissipative system of atoms in the presence of laser excitation to a Rydberg state and spontaneous emission. The atoms interact via the blockade effect, whereby an atom in the Rydberg state shifts the Rydberg level of neighboring atoms. We use mean-field theory to study how the Rydberg population varies in space. As the laser frequency changes, there is a continuous transition between the uniform and antiferromagnetic phases. The nonequilibrium nature also leads to a novel oscillatory phase and bistability between the uniform and antiferromagnetic phases. © 2011 American Physical Society.

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Lee, T. E., Häffner, H., & Cross, M. C. (2011). Antiferromagnetic phase transition in a nonequilibrium lattice of Rydberg atoms. Physical Review A - Atomic, Molecular, and Optical Physics, 84(3). https://doi.org/10.1103/PhysRevA.84.031402

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