Bose-Einstein condensates with attractive interatomic interactions undergo collective collapse beyond a critical number. We show theoretically that if the low-lying collective modes of the condensate are excited, the radial breathing mode further destabilizes the condensate. Remarkably, excitation of the quadrupolar surface mode causes the condensate to become more stable, imparting quasiangular momentum to it. A significantly larger number of atoms may then occupy the condensate. Efforts are under way for the experimental realization of these effects
Collective excitations of a quasi two dimensional Bose-Einstein Condensate, which is subje...
We explore the physics of three-dimensional shell-shaped condensates, relevant to cold atoms in bub...
We explore the physics of three-dimensional shell-shaped condensates, relevant to cold atoms in bub...
We excite the lowest-lying quadrupole mode of a Bose-Einstein condensate by modulating the atomic sc...
Since the early days of ultracold atomic physics, the phenomena of matter wave collapse, i.e. unrest...
The dynamics of a coupled Bose-Einstein condensate involving trapped atoms in two quantum states is ...
We excite the lowest-lying quadrupole mode of a Bose-Einstein condensate by modulating the atomic sc...
The stability of a Bose-Einstein condensed state of trapped ultra-cold atoms is investigated under t...
The point of instability of a Bose-Einstein condensate (BEC) due to attractive interactions was stud...
The occupation number of a magnetically trapped Bose-Einstein condensate is limited for atoms with a...
We analyze the dynamical stability of common spatial, or breathe-together, modes for a system of two...
We excite the lowest-lying quadrupole mode of a Bose-Einstein condensate by modulating the atomic sc...
Quantum theory predicts that Bose-Einstein condensation of a spatially homogeneous gas with attracti...
We present a general method for obtaining the exact static solutions and collective excitation frequ...
We explore the physics of three-dimensional shell-shaped condensates, relevant to cold atoms in bub...
Collective excitations of a quasi two dimensional Bose-Einstein Condensate, which is subje...
We explore the physics of three-dimensional shell-shaped condensates, relevant to cold atoms in bub...
We explore the physics of three-dimensional shell-shaped condensates, relevant to cold atoms in bub...
We excite the lowest-lying quadrupole mode of a Bose-Einstein condensate by modulating the atomic sc...
Since the early days of ultracold atomic physics, the phenomena of matter wave collapse, i.e. unrest...
The dynamics of a coupled Bose-Einstein condensate involving trapped atoms in two quantum states is ...
We excite the lowest-lying quadrupole mode of a Bose-Einstein condensate by modulating the atomic sc...
The stability of a Bose-Einstein condensed state of trapped ultra-cold atoms is investigated under t...
The point of instability of a Bose-Einstein condensate (BEC) due to attractive interactions was stud...
The occupation number of a magnetically trapped Bose-Einstein condensate is limited for atoms with a...
We analyze the dynamical stability of common spatial, or breathe-together, modes for a system of two...
We excite the lowest-lying quadrupole mode of a Bose-Einstein condensate by modulating the atomic sc...
Quantum theory predicts that Bose-Einstein condensation of a spatially homogeneous gas with attracti...
We present a general method for obtaining the exact static solutions and collective excitation frequ...
We explore the physics of three-dimensional shell-shaped condensates, relevant to cold atoms in bub...
Collective excitations of a quasi two dimensional Bose-Einstein Condensate, which is subje...
We explore the physics of three-dimensional shell-shaped condensates, relevant to cold atoms in bub...
We explore the physics of three-dimensional shell-shaped condensates, relevant to cold atoms in bub...