Quantum phases of spinful Fermi gases in optical cavities
arXiv:1711.00057 · doi:10.1103/PhysRevB.97.134502
Abstract
We explore the quantum phases emerging from the interplay between spin and motional degrees of freedom of a one-dimensional quantum fluid of spinful fermionic atoms, effectively interacting via a photon-mediating mechanism with tunable sign and strength g, as it can be realized in present-day experiments with optical cavities. We find the emergence, in the very same system, of spin- and atomic-density wave ordering, accompanied by the occurrence of superfluidity for g > 0, while cavity photons are seen to drive strong correlations at all g values, with fermionic character for g > 0, and bosonic character for g < 0. Due to the long-range nature of interactions, to infer these results we combine mean-field and exact diagonalization methods supported by bosonization analysis.
9 pages, 4 figures. Published version
References in corpus (9)
- Many-Body Physics with Ultracold Gases
- Theory of ultracold Fermi gases
- Cold atoms in cavity-generated dynamical optical potentials
- Cavity Opto-Mechanics with a Bose-Einstein Condensate
- Cavity QED with a Bose-Einstein condensate
- Roton-type mode softening in a quantum gas with cavity-mediated long-range interactions
- Self-organization of a Bose-Einstein condensate in an optical cavity
- Ultracold atoms in optical lattices generated by quantized light fields
- A Superradiant Topological Peierls Insulator inside an Optical Cavity
Cited by in corpus (23)
- Cavity QED with Quantum Gases: New Paradigms in Many-Body Physics
- Discovery of two-dimensional anisotropic superconductivity at KTaO (111) interfaces
- Two-dimensional superconductivity at the surfaces of KTaO3 gated with ionic liquid
- Photon-Mediated Spin-Exchange Dynamics of Spin-1 Atoms
- Atom-only descriptions of the driven-dissipative Dicke model
- Protecting Spin Coherence in a Tunable Heisenberg Model
- Strongly correlated Fermions strongly coupled to light
- Integrable and chaotic dynamics of spins coupled to an optical cavity
- Cavity-mediated unconventional pairing in ultracold fermionic atoms
- Long-range photon fluctuations enhance photon-mediated electron pairing and superconductivity
- Antiferromagnetic self-ordering of a Fermi gas in a ring cavity
- Cavity-assisted preparation and detection of a unitary Fermi gas
- Atomic Quantum Technologies for Quantum Matter and Fundamental Physics Applications
- Fermionization via cavity-assisted infinite-range interactions
- Spin- and Momentum-Correlated Atom Pairs Mediated by Photon Exchange and Seeded by Vacuum Fluctuations
- Cavity-induced emergent topological spin textures in a Bose Einstein condensate
- Many-Body Entanglement in Short-Range Interacting Fermi Gases for Metrology
- Non-Fermi-Liquid Behavior from Cavity Electromagnetic Vacuum Fluctuations at the Superradiant Transition
- Fluctuation-Induced Bistability of Fermionic Atoms Coupled to a Dissipative Cavity
- Cavity-induced Fulde-Ferrell-Larkin-Ovchinnikov superfluids of ultracold Fermi gases
- Topological Supersolidity of Dipolar Fermi Gases in a Spin-Dependent Optical Lattice
- Cooper pair polaritons in cold fermionic atoms within a cavity
- The fate of the Fermi surface coupled to a single-wave-vector cavity mode