Polarization angle dependence of the breathing modes in confined one-dimensional dipolar bosons
Abstract
Probing the radial collective oscillation of a trapped quantum system is an accurate experimental tool to investigate interactions and dimensionality effects. We consider a fully polarized quasi-one dimensional dipolar quantum gas of bosonic dysprosium atoms in a parabolic trap at zero temperature. We model the dipolar gas with an effective quasi-one dimensional Hamiltonian in the single-mode approximation, and derive the equation of state using a variational approximation based on the Lieb-Liniger gas Bethe Ansatz wavefunction or perturbation theory. We calculate the breathing mode frequencies while varying polarization angles by a sum-rule approach, and find them in good agreement with recent experimental findings.
Keywords
Cite
@article{arxiv.2012.07444,
title = {Polarization angle dependence of the breathing modes in confined one-dimensional dipolar bosons},
author = {S. De Palo and E. Orignac and M. L. Chiofalo and R. Citro},
journal= {arXiv preprint arXiv:2012.07444},
year = {2021}
}
Comments
10 pages, 8 PDF figures, RevTex 4.2