We model the nonlinear behavior of spin-1 Bose-Einstein condensates (BECs) with repulsive spin-independent interactions and either ferromagnetic or antiferromagnetic (polar) spin-dependent interactions, loaded into a one-dimensional optical lattice potential. We show that both types of BECs exhibit dynamical instabilities and may form spatially localized multicomponent structures. The localized states of the spinor matter waves take the form of vector gap solitons and self-trapped waves that exist only within gaps of the linear Bloch-wave band-gap spectrum. Of special interest are the nonlinear localized states that do not exhibit a common spatial density profile shared by all condensate components, and consequently cannot be described by t...
We analyze the dynamics of both population and spin densities, emerging from the spatial overlap bet...
We investigate the properties of modulational instability in the Salerno equation in quasi-one dimen...
We discuss localized ground states of Bose-Einstein condensates BEC’s in optical lattices with attra...
Solitons are fascinating non-dispersive solutions to non-linear systems, which appear in various sce...
We report a diversity of stable gap solitons in a spin-orbit-coupled Bose-Einstein condensate subjec...
We present the phase diagram, the underlying stability and magnetic properties as well as the dynami...
Spin-orbit (SO) coupling can be introduced in a Bose-Einstein condensate (BEC) as a gauge potential ...
We numerically investigate a particular type of spin soliton inside a trapped atomic spin-1 Bose-Ein...
Properties of localized states on array of BEC confined to a potential, representing superposition o...
We consider a binary Bose-Einstein condensate with linear and nonlinear interactions between its com...
We present a unified description of different types of matter-wave solitons that can emerge in quasi...
We consider the statics and dynamics of F = 1 spinor Bose-Einstein condensates (BECs) confined in do...
We study the formation of bound states and three-component bright vector solitons in a quasi-one-dim...
Abstract We study localized nonlinear excitations of a dilute Bose-Einstein condensate (BEC) with sp...
We analyze the dynamics of both population and spin densities, emerging from the spatial overlap bet...
We investigate the properties of modulational instability in the Salerno equation in quasi-one dimen...
We discuss localized ground states of Bose-Einstein condensates BEC’s in optical lattices with attra...
Solitons are fascinating non-dispersive solutions to non-linear systems, which appear in various sce...
We report a diversity of stable gap solitons in a spin-orbit-coupled Bose-Einstein condensate subjec...
We present the phase diagram, the underlying stability and magnetic properties as well as the dynami...
Spin-orbit (SO) coupling can be introduced in a Bose-Einstein condensate (BEC) as a gauge potential ...
We numerically investigate a particular type of spin soliton inside a trapped atomic spin-1 Bose-Ein...
Properties of localized states on array of BEC confined to a potential, representing superposition o...
We consider a binary Bose-Einstein condensate with linear and nonlinear interactions between its com...
We present a unified description of different types of matter-wave solitons that can emerge in quasi...
We consider the statics and dynamics of F = 1 spinor Bose-Einstein condensates (BECs) confined in do...
We study the formation of bound states and three-component bright vector solitons in a quasi-one-dim...
Abstract We study localized nonlinear excitations of a dilute Bose-Einstein condensate (BEC) with sp...
We analyze the dynamics of both population and spin densities, emerging from the spatial overlap bet...
We investigate the properties of modulational instability in the Salerno equation in quasi-one dimen...
We discuss localized ground states of Bose-Einstein condensates BEC’s in optical lattices with attra...