KPZ scaling in arrays of polariton condensates originates from fluctuations of Goldstone modes caused by U(1) symmetry breaking.
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Exciton polaritons in microcavities form synthetic photonic crystals with engineered band structures and interactions for exploring many-body physics from mean-field to quantum regimes.
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The origin of KPZ-scaling in arrays of polariton condensates
KPZ scaling in arrays of polariton condensates originates from fluctuations of Goldstone modes caused by U(1) symmetry breaking.
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Synthetic Polariton Matter in the solid state
Exciton polaritons in microcavities form synthetic photonic crystals with engineered band structures and interactions for exploring many-body physics from mean-field to quantum regimes.