arXiv · 1901.05974
Dissipation Induced Structural Instability and Chiral Dynamics in a Quantum Gas
Abstract
Dissipative and unitary processes define the evolution of a many-body system. Their interplay gives rise to dynamical phase transitions and can lead to instabilities. We discovered a non-stationary state of chiral nature in a synthetic many-body system with independently controllable unitary and dissipative couplings. Our experiment is based on a spinor Bose gas interacting with an optical resonator. Orthogonal quadratures of the resonator field coherently couple the Bose-Einstein condensate to two different atomic spatial modes whereas the dispersive effect of the resonator losses mediates a dissipative coupling between these modes. In a regime of dominant dissipative coupling we observe the chiral evolution and map it to a positional instability.
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Nishant Dogra, Manuele Landini, Katrin Kroeger, Lorenz Hruby, Tobias Donner, Tilman Esslinger. 2019-01-17. Dissipation Induced Structural Instability and Chiral Dynamics in a Quantum Gas. https://doi.org/10.1126/science.aaw4465
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