Controllable matter-wave switchers with vector Bose-Einstein solitons
arXiv:cond-mat/0407393 · doi:10.1103/PhysRevA.71.043608
Abstract
We show the possibility of producing matter-wave switching devices by using Manakov interactions between matter wave solitons in two-species Bose-Einstein Condensates (BEC). Our results establish the experimental parameters for three interaction regimes in two-species BECs: symmetric and asymmetric splitting, down-switching and up-switching. We have studied the dependence upon the initial conditions and the kind of interaction between the two components of the BECs.
5 pages, 4 figures
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Cited by in corpus (9)
- Formation and Transformation of Vector-Solitons in Two-Species Bose-Einstein Condensates with Tunable Interaction
- Detecting photon-photon scattering in vacuum at exawatt lasers
- Solitons in a trapped spin-1 atomic condensate
- General Mixed Multi-Soliton Solutions to One-Dimensional Multicomponent Yajima-Oikawa System
- Supersolitons: Solitonic excitations in atomic soliton chains
- Higher dimensional bright solitons and their collisions in multicomponent long wave-short wave system
- Matter wave switching in Bose-Einstein condensates via intensity redistribution soliton interactions
- Bright vector solitons in cross-defocusing nonlinear media
- Matter wave soliton collisions in the quasi one dimensional potential