Bright soliton to quantum droplet transition in a mixture of Bose-Einstein condensates
arXiv:1710.11079 · doi:10.1103/PhysRevLett.120.135301
Abstract
Attractive Bose-Einstein condensates can host two types of macroscopic self-bound states of different nature: bright solitons and quantum liquid droplets. Here, we investigate the connection between them with a Bose-Bose mixture confined in an optical waveguide. We develop a simple theoretical model to show that, depending on atom number and interaction strength, solitons and droplets can be smoothly connected or remain distinct states coexisting only in a bi-stable region. We experimentally measure their spin composition, extract their density for a broad range of parameters and map out the boundary of the region separating solitons from droplets.
9 pages, 6 figures, includes supplementary material