Sine-Gordon-like solitons were generated in a spinor BEC with tunable velocity and elastic collisions whose phase shifts agree with spin-1 simulations.
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Raman-dressed spin-orbit-coupled spin-1 condensates enable independent tuning of spin-mixing interactions for entanglement-enhanced interferometry and spatial density-stripe readout of phase.
Spinor Bose gases in one dimension are described by quantum integrable m by n matrix extensions of the nonlinear Schrödinger model, with Bethe equations and thermodynamic integral equations derived for arbitrary spin and specifically for spin-1 cases.
Derives a nonlinear quantum master equation for an ensemble of two-level systems and obtains self-consistent analytical solutions for spontaneous macroscopic quantum synchronization, including phase diagrams and inter-group synchronization.
Using Hartree-Fock-Bogoliubov theory in the Popov approximation, the authors determine the finite-temperature phase diagram of Rabi-coupled Bose mixtures via spin gap softening and analyze collective modes in homogeneous and quasi-1D trapped geometries.
citing papers explorer
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Observation of sine-Gordon-like solitons in a spinor Bose-Einstein condensate
Sine-Gordon-like solitons were generated in a spinor BEC with tunable velocity and elastic collisions whose phase shifts agree with spin-1 simulations.
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Atomic Interferometry with Spin-Orbit-Coupled Spin-1 Condensates
Raman-dressed spin-orbit-coupled spin-1 condensates enable independent tuning of spin-mixing interactions for entanglement-enhanced interferometry and spatial density-stripe readout of phase.
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Quantum integrable matrix models of spinor Bose gases in one spatial dimension
Spinor Bose gases in one dimension are described by quantum integrable m by n matrix extensions of the nonlinear Schrödinger model, with Bethe equations and thermodynamic integral equations derived for arbitrary spin and specifically for spin-1 cases.
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Spontaneous Macroscopic Quantum Synchronization in an Ensemble of Two-level Systems
Derives a nonlinear quantum master equation for an ensemble of two-level systems and obtains self-consistent analytical solutions for spontaneous macroscopic quantum synchronization, including phase diagrams and inter-group synchronization.
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Finite-temperature phase diagram and collective modes of coherently coupled Bose mixtures
Using Hartree-Fock-Bogoliubov theory in the Popov approximation, the authors determine the finite-temperature phase diagram of Rabi-coupled Bose mixtures via spin gap softening and analyze collective modes in homogeneous and quasi-1D trapped geometries.