Shell potentials for microgravity Bose-Einstein condensates
arXiv:1906.05885 · doi:10.1038/s41526-019-0087-y
Abstract
Extending the understanding of Bose-Einstein condensate (BEC) physics to new geometries and topologies has a long and varied history in ultracold atomic physics. One such new geometry is that of a bubble, where a condensate would be confined to the surface of an ellipsoidal shell. Study of this geometry would give insight into new collective modes, self-interference effects, topology-dependent vortex behavior, dimensionality crossovers from thick to thin shells, and the properties of condensates pushed into the ultradilute limit. Here we discuss a proposal to implement a realistic experimental framework for generating shell-geometry BEC using radiofrequency dressing of magnetically-trapped samples. Such a tantalizing state of matter is inaccessible terrestrially due to the distorting effect of gravity on experimentally-feasible shell potentials. The debut of an orbital BEC machine (NASA Cold Atom Laboratory, aboard the International Space Station) has enabled the operation of quantum-gas experiments in a regime of perpetual freefall, and thus has permitted the planning of microgravity shell-geometry BEC experiments. We discuss specific experimental configurations, applicable inhomogeneities and other experimental challenges, and outline potential experiments.
6 pages, 3 figures
References in corpus (30)
- Matter-wave interferometry in a double well on an atom chip
- Non-equilibrium coherence dynamics in one-dimensional Bose gases
- Squeezing and entanglement in a Bose-Einstein condensate
- Interferometry with Bose-Einstein Condensates in Microgravity
- Space-borne Bose-Einstein condensation for precision interferometry
- Dual Matter-Wave Inertial Sensors in Weightlessness
- Superfluid behaviour of a two-dimensional Bose gas
- Ultracold atoms confined in rf-induced two-dimensional trapping potentials
- The trapped two-dimensional Bose gas: from Bose-Einstein condensation to Berezinskii-Kosterlitz-Thouless physics
- Atom trapping and two-dimensional Bose-Einstein condensates in field-induced adiabatic potentials
- Bose-Einstein Condensation on the Surface of a Sphere
- Strongly Interacting Two-Dimensional Bose Gases
- A two-dimensional quantum gas in a magnetic trap
- Static and dynamic properties of shell-shaped condensates
- Bose-Einstein condensates in RF-dressed adiabatic potentials
- Fast manipulation of Bose-Einstein condensates with an atom chip
- Ultracold atoms in multiple-radiofrequency dressed adiabatic potentials
- Physics of hollow Bose-Einstein condensates
- Atoms in a radiofrequency-dressed optical lattice
- Bose-Einstein condensation in spherically symmetric traps
- Ground state of weakly repulsive soft-core bosons on a sphere
- Trapping atoms with radio-frequency adiabatic potentials
- Non-adiabatic losses from radio-frequency dressed cold atom traps: beyond the Landau-Zener model
- The space atom laser: An isotropic source for ultra-cold atoms in microgravity
- Magnetic vortex-like excitations on a sphere
- Compensation of gravity on cold atoms by a linear optical potential
- Influence of the Radio-Frequency source properties on RF-based atom traps
- Coexistence of superfluid and Mott phases of lattice bosons
- Observations of structure in a low-loss radiofrequency-dressed optical lattice
- RF dressed atoms beyond the linear Zeeman effect
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- Roadmap on Atomtronics: State of the art and perspective
- The Bose-Einstein Condensate and Cold Atom Laboratory
- Observation of ultracold atomic bubbles in orbital microgravity
- Quantum Bubbles in Microgravity
- Vortex-antivortex physics in shell-shaped Bose-Einstein condensates
- Expansion dynamics of a shell-shaped Bose-Einstein condensate
- Topological superfluid transition in bubble-trapped condensates
- Low-dimensional quantum gases in curved geometries
- Bose-Einstein Condensation on Curved Manifolds
- Perspective on Quantum Bubbles in Microgravity
- Thermodynamics in expanding shell-shaped Bose-Einstein condensates
- Superfluid vortex dynamics on a spherical film
- Superfluid vortex dynamics on an ellipsoid and other surfaces of revolution
- The fate of the false vacuum: Finite temperature, entropy and topological phase in quantum simulations of the early universe
- Shell-shaped Bose-Einstein condensates realized with dual-species mixtures
- Ground state and collective excitations of a dipolar Bose-Einstein condensate in a bubble trap
- The true mechanism of spontaneous order from turbulence in two-dimensional superfluid manifolds
- Supersolid phases of bosonic particles in a bubble trap
- Shell-shaped atomic gases
- Superfluid vortex dynamics on a torus and other toroidal surfaces of revolution
- Scattering theory and equation of state of a spherical two-dimensional Bose gas
- Equatorial Waves in Rotating Bubble-Trapped Superfluids
- Compensation of gravity on cold atoms by a linear optical potential
- BCS-BEC crossover of atomic Fermi superfluid in a spherical bubble trap
- Rossby-Haurwitz wave in a rotating bubble-shaped Bose-Einstein condensate
- Massive-vortex realization of a Bosonic Josephson Junction
- Matter-wave lensing of shell-shaped Bose-Einstein condensates
- Machine learning of XY model on a spherical Fibonacci lattice
- Bose-Hubbard model on polyhedral graphs
- Quantum Vortices in Curved Geometries
- Ultracold Bosons on a Regular Spherical Mesh
- Engineering phase and density of Bose-Einstein condensates in curved waveguides with toroidal topology
- Superfluid excitations in rotating two-dimensional ring traps
- Classical and Quantum Gases on a Semiregular Mesh
- Cold Atoms in Space: Community Workshop Summary and Proposed Road-Map
- Superfluid vortex multipoles and soliton stripes on a torus
- Two-component repulsive atomic Fermi gases in a thin spherical shell
- Effects of gravity on supersolid order in bubble-trapped bosons
- Spin coherence on the ferromagnetic spherical surface
- Dynamics of Vortex Clusters on a Torus
- Geometric filtering effect in expanding Bose-Einstein condensate shells
- Holographic homogeneous superfluid on the sphere
- Shell-shaped condensates with gravitational sag: contact and dipolar interactions
- Geometric potential for a Bose-Einstein condensate on a curved surface
- Repulsive fermions and shell effects on the surface of a sphere
- Machine learning of the Ising model on a spherical Fibonacci lattice