Perspective on Quantum Bubbles in Microgravity
arXiv:2211.04804 · doi:10.1088/2058-9565/acb1cf
Abstract
Progress in understanding quantum systems has been driven by the exploration of the geometry, topology, and dimensionality of ultracold atomic systems. The NASA Cold Atom Laboratory (CAL) aboard the International Space Station has enabled the study of ultracold atomic bubbles, a terrestrially-inaccessible topology. Proof-of-principle bubble experiments have been performed on CAL with an rf-dressing technique; an alternate technique (dual-species interaction-driven bubbles) has also been proposed. Both techniques can drive discovery in the next decade of fundamental physics research in microgravity.
17 pages, 2 figures
References in corpus (15)
- Quantum phase transition from a superfluid to a Mott insulator in a gas of ultracold atoms
- Theory of ultracold Fermi gases
- Matter-wave interferometry in a double well on an atom chip
- Interferometry with Bose-Einstein Condensates in Microgravity
- Dual Matter-Wave Inertial Sensors in Weightlessness
- Radio-frequency dressed state potentials for neutral atoms
- Ultracold atoms confined in rf-induced two-dimensional trapping potentials
- Ultracold atom interferometry in space
- Manipulation of ultracold atoms in dressed adiabatic radio frequency potentials
- A two-dimensional quantum gas in a magnetic trap
- Bose-Einstein condensates in RF-dressed adiabatic potentials
- Expansion dynamics of a shell-shaped Bose-Einstein condensate
- Superfluid and Mott Insulating shells of bosons in harmonically confined optical lattices
- Stability of a Bose condensed mixture on a bubble trap
- Scattering theory and equation of state of a spherical two-dimensional Bose gas
Cited by in corpus (16)
- Supersolid phases of bosonic particles in a bubble trap
- Shell-shaped atomic gases
- Triangular vortex lattices and giant vortices in rotating bubble Bose-Einstein condensates
- Colloquium: Synthetic quantum matter in non-standard geometries
- Matter-wave lensing of shell-shaped Bose-Einstein condensates
- Vortex structure and spectrum of atomic Fermi superfluid in a spherical bubble trap
- Faraday waves on a bubble Bose-Einstein condensed binary mixture
- Bose-Einstein condensates and the thin-shell limit in anisotropic bubble traps
- Engineering phase and density of Bose-Einstein condensates in curved waveguides with toroidal topology
- Superfluid excitations in rotating two-dimensional ring traps
- Two-component repulsive atomic Fermi gases in a thin spherical shell
- Non-Hermitian gravitational effects on Bose-Einstein condensate
- NASA's Cold Atom Laboratory: Five Years of Quantum Science Operations in Space
- Confinement-Induced Resonances in Spherical Shell Traps
- Geometric potential for a Bose-Einstein condensate on a curved surface
- Two-component atomic Fermi superfluid with spin-orbital coupling in thin spherical-shell geometry