Ultracold quantum gases confined in three-dimensional bubble traps are promising tools for exploring many-body effects on curved manifolds. As an alternative to the conventional technique of radio-frequency dressing, we propose to create such shell-shaped Bose-Einstein condensates in microgravity based on dual-species atomic mixtures, and we analyze their properties as well as the feasibility of realizing symmetrically filled shells. Beyond similarities with the radio-frequency dressing method, as in the collective excitation spectrum, our approach has several natural advantages like the robustness of the created quantum bubbles and the possibility of magnifying shell effects through an interaction-driven expansion
Static, dynamic, and topological properties of hollow systems differ from those that are fully fille...
The dynamics of quantum fields in curved spacetime give rise to various intriguing phenomena. Among ...
Inspired by investigations of Bose-Einstein condensates (BECs) produced in the Cold Atom Laboratory ...
Ultracold quantum gases confined in three-dimensional bubble traps are promising tools for exploring...
Ultracold quantum gases confined in three-dimensional bubble traps are promising tools for exploring...
Confining Bose-Einstein condensates (BECs) in shell-shaped trapping potentials enables the generatio...
Extending the understanding of Bose-Einstein condensate (BEC) physics to new geometries and topologi...
Extending the understanding of Bose–Einstein condensate (BEC) physics to new geometries and topologi...
The first realization of Bose-Einstein condensation in 1995 has revolutionized the field of atomic p...
Bose-Einstein condensates (BECs) confined on shell-shaped surfaces have been proposed as a platform ...
Progress in understanding quantum systems has been driven by the exploration of the geometry, topolo...
We report on the production of a 41 K- 87 Rb dual-species Bose–Einstein condensate with tunable inte...
Bose-Einstein condensate shells, while occurring in ultracold systems of coexisting phases and poten...
Substantial leaps in the understanding of quantum systems have been driven by exploring geometry, to...
We explore the physics of three-dimensional shell-shaped condensates, relevant to cold atoms in bub...
Static, dynamic, and topological properties of hollow systems differ from those that are fully fille...
The dynamics of quantum fields in curved spacetime give rise to various intriguing phenomena. Among ...
Inspired by investigations of Bose-Einstein condensates (BECs) produced in the Cold Atom Laboratory ...
Ultracold quantum gases confined in three-dimensional bubble traps are promising tools for exploring...
Ultracold quantum gases confined in three-dimensional bubble traps are promising tools for exploring...
Confining Bose-Einstein condensates (BECs) in shell-shaped trapping potentials enables the generatio...
Extending the understanding of Bose-Einstein condensate (BEC) physics to new geometries and topologi...
Extending the understanding of Bose–Einstein condensate (BEC) physics to new geometries and topologi...
The first realization of Bose-Einstein condensation in 1995 has revolutionized the field of atomic p...
Bose-Einstein condensates (BECs) confined on shell-shaped surfaces have been proposed as a platform ...
Progress in understanding quantum systems has been driven by the exploration of the geometry, topolo...
We report on the production of a 41 K- 87 Rb dual-species Bose–Einstein condensate with tunable inte...
Bose-Einstein condensate shells, while occurring in ultracold systems of coexisting phases and poten...
Substantial leaps in the understanding of quantum systems have been driven by exploring geometry, to...
We explore the physics of three-dimensional shell-shaped condensates, relevant to cold atoms in bub...
Static, dynamic, and topological properties of hollow systems differ from those that are fully fille...
The dynamics of quantum fields in curved spacetime give rise to various intriguing phenomena. Among ...
Inspired by investigations of Bose-Einstein condensates (BECs) produced in the Cold Atom Laboratory ...