Multivalley dark solitons in multicomponent Bose-Einstein condensates with repulsive interactions
arXiv:2102.10507 · doi:10.1103/PhysRevE.104.014201
Abstract
We obtain multivalley dark soliton solutions with asymmetric or symmetric profiles in multicomponent repulsive Bose-Einstein condensates by developing the Darboux transformation method. We demonstrate that the width-dependent parameters of solitons significantly affect the velocity ranges and phase jump regions of multivalley dark solitons, in sharp contrast to scalar dark solitons. For double-valley dark solitons, we find that the phase jump is in the range , which is quite different from that of the usual single-valley dark soliton. Based on our results, we argue that the phase jump of an -valley dark soliton could be in the range , supported by our analysis extending up to five-component condensates. The interaction between a double-valley dark soliton and a single-valley dark soliton is further investigated, and we reveal a striking collision process in which the double-valley dark soliton is transformed into a breather after colliding with the single-valley dark soliton. Our analyses suggest that this breather transition exists widely in the collision processes involving multivalley dark solitons. The possibilities for observing these multivalley dark solitons in related Bose-Einstein condensates experiments are discussed.
References in corpus (5)
- Oscillations and interactions of dark and dark-bright solitons in Bose-Einstein condensates
- Generation of dark-bright soliton trains in superfluid-superfluid counterflow
- Experimental observation of oscillating and interacting matter wave dark solitons
- Collisions of matter-wave solitons
- Stable multi-peak vector solitons in spin-orbit coupled spin-1 polar condensates
Cited by in corpus (7)
- Non-degenerate Kuznetsov-Ma solitons of Manakov equations and their physical spectra
- Dynamics of nondegenerate solitons in long-wave short-wave resonance interaction system
- Fundamental and second-order dark soliton solutions of 2- and 3-component Manakov equations in the defocusing regime
- Simulation of universal optical logic gates under energy sharing collisions of Manakov solitons and fulfillment of practical optical logic criteria
- Phase Characters of Optical Dark Solitons with the Third-order Dispersion and Delayed Nonlinear Response
- Linear interference and systematic soliton shape modulation by engineering plane wave background and soliton parameters
- Nondegenerate bright solitons in coupled nonlinear Schrödinger systems: Recent developments on optical vector solitons