Stability analysis of three-dimensional breather solitons in a Bose–Einstein condensate

Author:

Matuszewski M1,Infeld E2,Rowlands G3,Trippenbach M12

Affiliation:

1. Institute of Theoretical Physics, Physics Department, Warsaw UniversityHoza 69, PL-00-681 Warsaw, Poland

2. Soltan Institute for Nuclear StudiesHoza 69, PL-00-681 Warsaw, Poland

3. Department of Physics, University of WarwickCoventry, CV4 7AL, UK

Abstract

We investigated the stability properties of breather soliton trains in a three-dimensional Bose–Einstein condensate (BEC) with Feshbach-resonance management of the scattering length. This is done so as to generate both attractive and repulsive interaction. The condensate is confined only by a one-dimensional optical lattice and we consider strong, moderate and weak confinement. By strong confinement we mean a situation in which a quasi two-dimensional soliton is created. Moderate confinement admits a fully three-dimensional soliton. Weak confinement allows individual solitons to interact. Stability properties are investigated by several theoretical methods such as a variational analysis, treatment of motion in effective potential wells, and collapse dynamics. Armed with all the information forthcoming from these methods, we then undertake a numerical calculation. Our theoretical predictions are fully confirmed, perhaps to a higher degree than expected. We compare regions of stability in parameter space obtained from a fully three-dimensional analysis with those from a quasi two-dimensional treatment, when the dynamics in one direction are frozen. We find that in the three-dimensional case the stability region splits into two parts. However, as we tighten the confinement, one of the islands of stability moves toward higher frequencies and the lower frequency region becomes more and more like that for the quasi two-dimensional case. We demonstrate these solutions in direct numerical simulations and, importantly, suggest a way of creating robust three-dimensional solitons in experiments in a BEC in a one-dimensional lattice.

Publisher

The Royal Society

Subject

General Physics and Astronomy,General Engineering,General Mathematics

Cited by 4 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Bright Solitonic Matter-Wave Interferometer;Physical Review Letters;2014-07-02

2. Three-dimensional hybrid vortex solitons;New Journal of Physics;2014-06-17

3. Similarity transformations for nonlinear Schrödinger equations with time-dependent coefficients;Physica D: Nonlinear Phenomena;2006-09

4. A hybrid variational method of describing pulse splitting by dispersion management;Journal of Physics B: Atomic, Molecular and Optical Physics;2006-02-27

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