Litcius/Paper detail

Exotic Vortex States with Discrete Rotational Symmetry in Atomic Fermi Gases with Spin-Orbital–Angular-Momentum Coupling

Liang‐Liang Wang, An-Chun Ji, Qing Sun, Jian Li

2021Physical Review Letters23 citationsDOIOpen Access PDF

Abstract

We investigate the superfluidity of a two-component Fermi gas with spin-orbital-angular-momentum coupling (SOAMC). Because of the intricate interplay of SOAMC, two-photon detuning and atom-atom interaction, a family of vortex ground states emerges in a broad parameter regime of the phase diagram, in contrast to the usual case where an external rotation or magnetic field is generally required. More strikingly, an unprecedented vortex state, which breaks the continuous rotational symmetry to a discrete one spontaneously, is predicted to occur. The underlying physics are elucidated and verified by numerical simulations. The unique density distributions of the predicted vortex states enable a direct observation in experiment.

Topics & Concepts

PhysicsAngular momentumAngular momentum couplingSuperfluidityVortexTotal angular momentum quantum numberSpin (aerodynamics)Vortex stateFermi Gamma-ray Space TelescopeCoupling (piping)Condensed matter physicsAtomic physicsQuantum mechanicsMagnetic fieldEngineeringThermodynamicsMechanical engineeringCold Atom Physics and Bose-Einstein CondensatesAtomic and Subatomic Physics ResearchQuantum, superfluid, helium dynamics