We demonstrate numerically the efficient generation of vortices in Bose-Einstein condensates (BECs) by using a “phase imprinting” method. The method consists of passing a far-off-resonant laser pulse through an absorption plate with an azimuthally dependent absorption coefficient, imaging the laser beam onto a BEC, and thus creating the corresponding nondissipative Stark-shift potential and condensate phase shift. In our calculations we take into account experimental imperfections. We also propose an interference method to detect vortices by coherently pushing part of the condensate using optically induced Bragg scattering. © 1999 The American Physical Society
By direct numerical simulation of the time-dependent Gross-Pitaevskii equation, we study different a...
Quantum vortices in superfluid Bose Einstein condensates (BECs) are excellent candidates for studyin...
Quantized vortices were first predicted and discovered in superfluid. The first experimental realiza...
Since the first Bose-Einstein Condensate (BEC) was demonstrated in a dilute atomic gas [1], rotating...
We analyze numerically the process of dynamical generation of spatially localized vortices in Bose-E...
Dilute gas Bose-Einstein condensates (BECs) provide unique and powerful experimental platforms to st...
We consider the manipulation of Bose-Einstein condensate vortices by optical potentials generated by...
We numerically investigate an experimentally viable method, that we will refer to as the “chopsticks...
We study the dynamics of Bose-Einstein condensates in an optical lattice and harmonic trap. The cond...
We study controlled methods of preparing vortex configurations in atomic Bose-Einstein condensates a...
International audienceWe propose a method to prepare states of given quantized circulation in annula...
By numerical simulation of the time-dependent Gross-Pitaevskii equation we show that a weakly intera...
We experimentally and numerically demonstrate deterministic creation and manipulation of a pair of o...
By direct numerical simulation of the time-dependent Gross-Pitaevskii equation we study different as...
The Bose-Einstein condensation (BEC) laboratory at the University of Arizona has built a program of ...
By direct numerical simulation of the time-dependent Gross-Pitaevskii equation, we study different a...
Quantum vortices in superfluid Bose Einstein condensates (BECs) are excellent candidates for studyin...
Quantized vortices were first predicted and discovered in superfluid. The first experimental realiza...
Since the first Bose-Einstein Condensate (BEC) was demonstrated in a dilute atomic gas [1], rotating...
We analyze numerically the process of dynamical generation of spatially localized vortices in Bose-E...
Dilute gas Bose-Einstein condensates (BECs) provide unique and powerful experimental platforms to st...
We consider the manipulation of Bose-Einstein condensate vortices by optical potentials generated by...
We numerically investigate an experimentally viable method, that we will refer to as the “chopsticks...
We study the dynamics of Bose-Einstein condensates in an optical lattice and harmonic trap. The cond...
We study controlled methods of preparing vortex configurations in atomic Bose-Einstein condensates a...
International audienceWe propose a method to prepare states of given quantized circulation in annula...
By numerical simulation of the time-dependent Gross-Pitaevskii equation we show that a weakly intera...
We experimentally and numerically demonstrate deterministic creation and manipulation of a pair of o...
By direct numerical simulation of the time-dependent Gross-Pitaevskii equation we study different as...
The Bose-Einstein condensation (BEC) laboratory at the University of Arizona has built a program of ...
By direct numerical simulation of the time-dependent Gross-Pitaevskii equation, we study different a...
Quantum vortices in superfluid Bose Einstein condensates (BECs) are excellent candidates for studyin...
Quantized vortices were first predicted and discovered in superfluid. The first experimental realiza...