Detecting One-Dimensional Dipolar Bosonic Crystal Orders via Full Distribution Functions
Abstract
We explore the groundstates of a few dipolar bosons in optical lattices with incommensurate filling. The competition of kinetic, potential, and interaction energies leads to the emergence of a variety of crystal state orders with characteristic one- and two-body densities. We probe the transitions between these orders and construct the emergent state diagram as a function of the dipolar interaction strength and the lattice depth. We show that the crystal state orders can be observed using the full distribution functions of the particle number extracted from simulated single-shot images.
Cite
@article{arxiv.1904.03966,
title = {Detecting One-Dimensional Dipolar Bosonic Crystal Orders via Full Distribution Functions},
author = {Budhaditya Chatterjee and Camille Lévêque and Jörg Schmiedmayer and Axel U. J. Lode},
journal= {arXiv preprint arXiv:1904.03966},
year = {2020}
}
Comments
6 pages, 3 Figures in main text. Supplementary Information included. This version accepted for publication at Physical Review Letters. Software for the computations available at http://www.ultracold.org