Band-edge superfluid of Bose-Einstein condensates in the spin-orbit-coupled Zeeman lattice
arXiv:2502.08937 · doi:10.1103/PhysRevA.111.063305
Abstract
Since the first experimental realization of Bose-Einstein condensates in a spin-orbit-coupled Zeeman lattice, a wide range of applications have been found in these systems. Here, we systematically study the ground-state phase diagram of the systems. We address that the band-edge phase in the ground-state phase diagram is exotic and exists in a very broad parameter regime. The superfluidity of the band-edge states is identified by elementary excitations and superfluid fraction.
12 pagesm 4 figures
References in corpus (39)
- Spin-Injection Spectroscopy of a Spin-Orbit Coupled Fermi Gas
- Degenerate Quantum Gases with Spin-Orbit Coupling
- Spin-Orbit Coupled Spinor Bose-Einstein Condensates
- Observation of the supersolid stripe phase in spin-orbit coupled Bose-Einstein condensates
- Bose Hubbard Models with Synthetic Spin-Orbit Coupling: Mott Insulators, Spin Textures and Superfluidity
- Tunable Spin-Orbit Coupling via Strong Driving in Ultracold Atom Systems
- Dicke-type phase transition in a spin-orbit coupled Bose-Einstein condensate
- Spin-orbit coupled Bose-Einstein condensates in a one-dimensional optical lattice
- Anisotropic dynamics of a spin-orbit coupled Bose-Einstein condensate
- Exotic quantum spin models in spin-orbit-coupled Mott insulators
- Softening of Roton and Phonon Modes in a Bose-Einstein Condensate with Spin-Orbit Coupling
- Measurement of collective excitations in a spin-orbit-coupled Bose-Einstein condensate
- Bose-Einstein Condensates in Spin-Orbit Coupled Optical Lattices: Flat Bands and Superfluidity
- Collapse of spin-orbit coupled Bose-Einstein condensates
- Bloch Oscillations in Optical and Zeeman Lattices in the Presence of Spin-Orbit Coupling
- Tunable spin-orbit coupled Bose-Einstein condensates in deep optical lattices
- Superfluid fraction in an interacting spatially modulated Bose-Einstein condensate
- Sub-unity superfluid fraction of a supersolid from self-induced Josephson effect
- Dynamics of Stripe Patterns in Supersolid Spin-Orbit-Coupled Bose Gases
- Floquet engineering topological Dirac bands
- Observation of anisotropic superfluid density in an artificial crystal
- Elementary excitations in a spin-orbit-coupled spin-1 Bose-Einstein condensate
- The evolution of magnetic structure driven by a synthetic spin-orbit coupling in two-component Bose-Hubbard model
- Superfluid Breakdown and Multiple Roton Gaps in Spin-Orbit Coupled Bose-Einstein Condensates on an Optical Lattice
- Localization of ultracold atoms in incommensurate spin-orbit-coupling and Zeeman lattices
- Probing the Flat Band of Optically-Trapped Spin-Orbital Coupled Bose Gases Using Bragg Spectroscopy
- Bloch oscillations of spin-orbit-coupled cold atoms in an optical lattice and spin current generation
- Position-dependent spin-orbit coupling for ultracold atoms
- Observation of Momentum Space Josephson Effects
- Quantum Phases of Two-Component Bosons with Spin-Orbit Coupling in Optical Lattices
- Landau's criterion for an anisotropic Bose-Einstein condensate
- Plane and Stripe Wave Phases of a Spin-Orbit Coupled Bose-Einstein Condensate in an Optical Lattice with a Zeeman Field
- Quantum phases and collective excitations of a spin-orbit-coupled Bose-Einstein condensate in a one-dimensional optical lattice
- Superfluidity of a Raman spin-orbit-coupled Bose gas at finite temperature
- Pseudo-Goldstone Excitations in a Striped Bose-Einstein Condensate
- Lattice dynamics in an emergent Zeeman lattice
- symmetry broken supersolid in spin-orbit-coupled Bose-Einstein condensates
- Generating topological optical flux lattices for ultracold atoms by modulated Raman and radio-frequency couplings
- Bloch oscillations in supersolids