We model propagation of far-red-detuned optical vortex beams through a Bose-Einstein condensate using nonlinear Schrödinger and Gross-Pitaevskii equations. We show the formation of coupled light-atomic solitons that rotate azimuthally before moving off tangentially, carrying angular momentum. The number, and velocity, of solitons, depends on the orbital angular momentum of the optical field. Using a Bessel-Gauss beam increases radial confinement so that solitons can rotate with fixed azimuthal velocity. Our model provides a highly controllable method of channeling a BEC and atomic transport
Parametric solitons or simultaneous solitary waves (simultons), involving the optical x^(2) nonlinea...
Optomechanical forces in a cloud of cold atoms under the action of a coherent beam of light lead to ...
Restricted Access.We have explored the feasibility of designing atomic and molecular bright solitons...
We model propagation of far-red-detuned optical vortex beams through a Bose-Einstein condensate usin...
We numerically model the propagation of far-detuned optical beams through a Bose-Einstein condensate...
We numerically model the propagation of light through a Kerr medium and through a far-red-detuned Bo...
Clouds of cold neutral atoms driven by a coherent light beam in a ring cavity exhibit self-structure...
We propose methods to generate and manipulate vortex dipoles in an atomic Bose-Einstein condensate u...
We investigate the dynamics of vortices in repulsive Bose–Einstein condensates in the presence of an...
The new science of nonlinear atom optics and atom lasers is evolving rapidly. There are similarities...
By solving the three-dimensional Gross-Pitaevskii equation, we generate two-dimensional axially symm...
We describe the coherent transfer of the orbital angular momentum of a photon to an atom in quantize...
We study the dynamics of Bose-Einstein condensates in an optical lattice and harmonic trap. The cond...
Using the explicit numerical solution of the axially symmetric Gross-Pitaevskii equation we study th...
We studied the evolution of vortex solitons in two-component coupled Bose-Einstein condensates trapp...
Parametric solitons or simultaneous solitary waves (simultons), involving the optical x^(2) nonlinea...
Optomechanical forces in a cloud of cold atoms under the action of a coherent beam of light lead to ...
Restricted Access.We have explored the feasibility of designing atomic and molecular bright solitons...
We model propagation of far-red-detuned optical vortex beams through a Bose-Einstein condensate usin...
We numerically model the propagation of far-detuned optical beams through a Bose-Einstein condensate...
We numerically model the propagation of light through a Kerr medium and through a far-red-detuned Bo...
Clouds of cold neutral atoms driven by a coherent light beam in a ring cavity exhibit self-structure...
We propose methods to generate and manipulate vortex dipoles in an atomic Bose-Einstein condensate u...
We investigate the dynamics of vortices in repulsive Bose–Einstein condensates in the presence of an...
The new science of nonlinear atom optics and atom lasers is evolving rapidly. There are similarities...
By solving the three-dimensional Gross-Pitaevskii equation, we generate two-dimensional axially symm...
We describe the coherent transfer of the orbital angular momentum of a photon to an atom in quantize...
We study the dynamics of Bose-Einstein condensates in an optical lattice and harmonic trap. The cond...
Using the explicit numerical solution of the axially symmetric Gross-Pitaevskii equation we study th...
We studied the evolution of vortex solitons in two-component coupled Bose-Einstein condensates trapp...
Parametric solitons or simultaneous solitary waves (simultons), involving the optical x^(2) nonlinea...
Optomechanical forces in a cloud of cold atoms under the action of a coherent beam of light lead to ...
Restricted Access.We have explored the feasibility of designing atomic and molecular bright solitons...