We investigate the quench dynamics of a two-component Bose mixture and study the onset of modulational instability, which leads the system far from equilibrium. Analogous to the single-component counterpart, this phenomenon results in the creation of trains of bright solitons. We provide an analytical estimate of the number of solitons at long times after the quench for each of the two components based on the most unstable mode of the Bogoliubov spectrum, which agrees well with our simulations for quenches to the weak attractive regime when the two components possess equal intraspecies interactions and loss rates. We also explain the significantly different soliton dynamics in a realistic experimental homonuclear potassium mixture in terms ...
In view of current research effort on semiconducting photonic-crystal defect microcavities, we consi...
We consider a one-dimensional model of a two-component Bose–Einstein condensate in the presence of p...
The formation of bright solitons in a Bose-Fermi mixture as a result of a competition between boson-...
We investigate the quench dynamics of a two-component Bose mixture and study the onset of modulation...
We employ a time- dependent mean- field- hydrodynamic model to study the generation of bright solito...
Bose-Einstein condensates (BECs) in an optical lattice driven out of equilibrium and the subsequent ...
We study the collective modes of the minority component of a highly unbalanced Bose-Bose m...
The existence, stability, and dynamics of bound pairs of symbiotic matter waves in the form of dark-...
We report results of systematic simulations of the dynamics of solitons in the framework of the one-...
In this work we present a systematic theoretical analysis regarding dark-bright solitons and their i...
We variationally determine the dynamics of bright soliton trains composed of harmonically trapped Bo...
We variationally determine the dynamics of bright soliton trains composed of harmonically trapped Bo...
Bright solitary-waves may be created in dilute Bose-Einstein condensates of at tractively interactin...
4We propose a new type of experimentally feasible quantum quench protocol in which a quantum system ...
In view of current research effort on semiconducting photonic-crystal defect microcavities, we consi...
We consider a one-dimensional model of a two-component Bose–Einstein condensate in the presence of p...
The formation of bright solitons in a Bose-Fermi mixture as a result of a competition between boson-...
We investigate the quench dynamics of a two-component Bose mixture and study the onset of modulation...
We employ a time- dependent mean- field- hydrodynamic model to study the generation of bright solito...
Bose-Einstein condensates (BECs) in an optical lattice driven out of equilibrium and the subsequent ...
We study the collective modes of the minority component of a highly unbalanced Bose-Bose m...
The existence, stability, and dynamics of bound pairs of symbiotic matter waves in the form of dark-...
We report results of systematic simulations of the dynamics of solitons in the framework of the one-...
In this work we present a systematic theoretical analysis regarding dark-bright solitons and their i...
We variationally determine the dynamics of bright soliton trains composed of harmonically trapped Bo...
We variationally determine the dynamics of bright soliton trains composed of harmonically trapped Bo...
Bright solitary-waves may be created in dilute Bose-Einstein condensates of at tractively interactin...
4We propose a new type of experimentally feasible quantum quench protocol in which a quantum system ...
In view of current research effort on semiconducting photonic-crystal defect microcavities, we consi...
We consider a one-dimensional model of a two-component Bose–Einstein condensate in the presence of p...
The formation of bright solitons in a Bose-Fermi mixture as a result of a competition between boson-...