We investigate the properties of three-component Bose-Einstein condensate systems with spin exchange interactions. We consider different coupling constants from those very special ones leading to exact solutions known in the literature. When two solitons collide, a spin component oscillation of the two emerging entities is observed. This behavior seems to be generic. A mathematical model is derived for the emerging solitons. It describes the new oscillatory phenomenon extremely well. Surprisingly, the model is in fact an exact solution to the initial equations. This comes as a bonus
We study bright solitons in a Bose-Einstein condensate with a spin-orbit coupling that has been real...
We derive a system of nonpolynomial Schroedinger equations (NPSEs) for one-dimensional wave function...
Spin-orbit (SO) coupling can be introduced in a Bose-Einstein condensate (BEC) as a gauge potential ...
We introduce a class of soliton like entities in spinor three-component Bose-Einstein condensates. T...
Solitons are fascinating non-dispersive solutions to non-linear systems, which appear in various sce...
We present families of beating dark-dark solitons in spin-orbit (SO) -coupled Bose-Einstein condensa...
Beyond the mean-field theory, a new model of the Gross–Pitaevskii equation (GPE) that describes the ...
For the first time, we find the complex solitons for a quasi-one-dimensional Bose-Einstein condens...
We present a theoretical analysis of three-dimensional (3D) matter-wave solitons and their stability...
In this paper, we investigate a five-component Gross–Pitaevskii equation, which is demonstrated to d...
Five-component minimum-energy bound states and mobile vector solitons of a spin-orbit-coupled quasi-...
In the present work, we revisit two-component Bose-Einstein condensates in their fully threedimensio...
We present a unified description of different types of matter-wave solitons that can emerge in quasi...
In this paper, we present many matter-wave solitons in a system of three component Gross-P...
We study the dynamics of binary Bose-Einstein condensates made of ultracold and dilute alkali-metal ...
We study bright solitons in a Bose-Einstein condensate with a spin-orbit coupling that has been real...
We derive a system of nonpolynomial Schroedinger equations (NPSEs) for one-dimensional wave function...
Spin-orbit (SO) coupling can be introduced in a Bose-Einstein condensate (BEC) as a gauge potential ...
We introduce a class of soliton like entities in spinor three-component Bose-Einstein condensates. T...
Solitons are fascinating non-dispersive solutions to non-linear systems, which appear in various sce...
We present families of beating dark-dark solitons in spin-orbit (SO) -coupled Bose-Einstein condensa...
Beyond the mean-field theory, a new model of the Gross–Pitaevskii equation (GPE) that describes the ...
For the first time, we find the complex solitons for a quasi-one-dimensional Bose-Einstein condens...
We present a theoretical analysis of three-dimensional (3D) matter-wave solitons and their stability...
In this paper, we investigate a five-component Gross–Pitaevskii equation, which is demonstrated to d...
Five-component minimum-energy bound states and mobile vector solitons of a spin-orbit-coupled quasi-...
In the present work, we revisit two-component Bose-Einstein condensates in their fully threedimensio...
We present a unified description of different types of matter-wave solitons that can emerge in quasi...
In this paper, we present many matter-wave solitons in a system of three component Gross-P...
We study the dynamics of binary Bose-Einstein condensates made of ultracold and dilute alkali-metal ...
We study bright solitons in a Bose-Einstein condensate with a spin-orbit coupling that has been real...
We derive a system of nonpolynomial Schroedinger equations (NPSEs) for one-dimensional wave function...
Spin-orbit (SO) coupling can be introduced in a Bose-Einstein condensate (BEC) as a gauge potential ...