Supersolidity in Two-Dimensional Trapped Dipolar Droplet Arrays
Quantum Gases
2021-10-13 v1 Atomic Physics
Abstract
We theoretically investigate the ground states and the spectrum of elementary excitations across the superfluid to droplet crystallization transition of an oblate dipolar Bose-Einstein condensate. We systematically identify regimes where spontaneous rotational symmetry breaking leads to the emergence of a supersolid phase with characteristic collective excitations, such as the Higgs amplitude mode. Furthermore, we study the dynamics across the transition and show how these supersolids can be realized with standard protocols in state-of-the-art experiments.
Keywords
Cite
@article{arxiv.2103.09752,
title = {Supersolidity in Two-Dimensional Trapped Dipolar Droplet Arrays},
author = {J. Hertkorn and J. -N. Schmidt and M. Guo and F. Böttcher and K. S. H. Ng and S. D. Graham and P. Uerlings and H. P. Büchler and T. Langen and M. Zwierlein and T. Pfau},
journal= {arXiv preprint arXiv:2103.09752},
year = {2021}
}
Comments
10 pages, 2+1 figures