Bose-Einstein condensates (BECs) are in many ways similar to laser light. In Fox-Li-type simulations, which involve free evolution of a two-dimensional BEC in combination with periodic focusing and localized loss, we model here numerically the BEC equivalent of transverse aspects of laser resonators. We discuss possible experimental realizations in the form of periodic series of light pulses interacting with the BEC. We show that such experiments can result in trapped, structurally stable, modes analogous to Hermite-Gaussian laser modes. This outlines a new way of trapping BECs and illustrates further the analogy between BECs and laser light
We overview our recent theoretical studies on nonlinear atom optics of the Bose-Einstein condensates...
We derive an effective nonpolynomial Schrodinger equation (NPSE) for self-repulsive or attractive BE...
We present a consistent second order perturbation theory for the lowest-lying condensed modes of ve...
Bose-Einstein condensates (BECs) are in many ways similar to laser light. In Fox-Li-type simulations...
We investigate theoretically an original route to achieve Bose-Einstein condensation using dark powe...
4This paper is concerned with the long-wavelength instabilities (infrared catastrophes) occurring in...
By direct numerical simulation of the time-dependent Gross-Pitaevskii equation we study different as...
Introduction Bose-Einstein condensation in trapped dilute gases 1, 2, 3 was observed only recentl...
By direct numerical simulation of the time-dependent Gross-Pitaevskii equation, we study different a...
Exchange of energy by means of light-matter interaction provides a new dimension to various nonlinea...
A self-consistent theory of a cylindrically shaped Bose-Einstein condensate (BEC) periodically modul...
Discrete breathers, originally introduced in the context of biopolymers and coupled nonlinear oscill...
The coherent characteristics of four trapped Bose-Einstein condensates (BEC) conjunct one by one in ...
The interaction between Bose Einstein condensates (BECs) and coherent light fields is treated within...
The dynamics of Bose-Einstein condensates in the lowest energy band of a one-dimensional optical lat...
We overview our recent theoretical studies on nonlinear atom optics of the Bose-Einstein condensates...
We derive an effective nonpolynomial Schrodinger equation (NPSE) for self-repulsive or attractive BE...
We present a consistent second order perturbation theory for the lowest-lying condensed modes of ve...
Bose-Einstein condensates (BECs) are in many ways similar to laser light. In Fox-Li-type simulations...
We investigate theoretically an original route to achieve Bose-Einstein condensation using dark powe...
4This paper is concerned with the long-wavelength instabilities (infrared catastrophes) occurring in...
By direct numerical simulation of the time-dependent Gross-Pitaevskii equation we study different as...
Introduction Bose-Einstein condensation in trapped dilute gases 1, 2, 3 was observed only recentl...
By direct numerical simulation of the time-dependent Gross-Pitaevskii equation, we study different a...
Exchange of energy by means of light-matter interaction provides a new dimension to various nonlinea...
A self-consistent theory of a cylindrically shaped Bose-Einstein condensate (BEC) periodically modul...
Discrete breathers, originally introduced in the context of biopolymers and coupled nonlinear oscill...
The coherent characteristics of four trapped Bose-Einstein condensates (BEC) conjunct one by one in ...
The interaction between Bose Einstein condensates (BECs) and coherent light fields is treated within...
The dynamics of Bose-Einstein condensates in the lowest energy band of a one-dimensional optical lat...
We overview our recent theoretical studies on nonlinear atom optics of the Bose-Einstein condensates...
We derive an effective nonpolynomial Schrodinger equation (NPSE) for self-repulsive or attractive BE...
We present a consistent second order perturbation theory for the lowest-lying condensed modes of ve...