Quantum correlations and spatial localization in trapped one-dimensional ultra-cold Bose-Bose-Bose mixtures
Abstract
We systematically investigate and illustrate the complete ground-state phase diagram for a one-dimensional, three-species mixture of a few repulsively interacting bosons trapped harmonically. To numerically obtain the solutions to the many-body Schr\"{o}dinger equation, we employ the improved Exact Diagonalization method [T. D. Anh-Tai {\it et al.}, SciPost Physics 15, 048 (2023)], which is capable of treating strongly-correlated few-body systems from first principles in an efficiently truncated Hilbert space. We present our comprehensive results for all possible combinations of intra- and interspecies interactions in the extreme limits that are either the ideal limit () or close to the hard-core limit (). These results show the emergence of unique ground-state properties related to correlations, coherence and spatial localization stemming from strongly repulsive interactions.
Keywords
Cite
@article{arxiv.2501.15358,
title = {Quantum correlations and spatial localization in trapped one-dimensional ultra-cold Bose-Bose-Bose mixtures},
author = {Tran Duong Anh-Tai and Miguel A. García-March and Thomas Busch and Thomás Fogarty},
journal= {arXiv preprint arXiv:2501.15358},
year = {2026}
}
Comments
22 pages, 12 figures