arXiv · 1705.09607
Quantum dark solitons in Bose gas confined in a hard wall box
Abstract
Schrödinger equation for Bose gas with repulsive contact interactions in one-dimensional space may be solved analytically with the help of the Bethe ansatz if we impose periodic boundary conditions. It was shown that in such a system there exist many-body eigenstates directly corresponding to dark soliton solutions of the mean-field equation. The system is still integrable if one switches from the periodic boundary conditions to an infinite square well potential. The corresponding eigenstates were constructed by M. Gaudin. We analyze weak interaction limit of Gaudin's solutions and identify parametrization of eigenstates strictly connected with single and multiple dark solitons. Numerical simulations of detection of particle's positions reveal dark solitons in the weak interaction regime and their quantum nature in the presence of strong interactions.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Andrzej Syrwid, Krzysztof Sacha. 2017-09-16. Quantum dark solitons in Bose gas confined in a hard wall box. https://doi.org/10.1103/physreva.96.043602
Cite the original work for its findings. Save a collection to share your selection of sources.