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Synchronization of Quasi-Particle Excitations in a Quantum Gas with Cavity-Mediated Interactions

Published 24 Apr 2025 in cond-mat.quant-gas, physics.atom-ph, and quant-ph | (2504.17731v1)

Abstract: Driven-dissipative quantum systems can undergo transitions from stationary to dynamical phases, reflecting the emergence of collective non-equilibrium behavior. We study such a transition in a Bose-Einstein condensate coupled to an optical cavity and develop a cavity-assisted Bragg spectroscopy technique to resolve its collective modes. We observe dissipation-induced synchronization at the quasiparticle level, where two roton-like modes coalesce at an exceptional point. This reveals how dissipation microscopically drives collective dynamics and signals a precursor to a dynamical phase transition.

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