Macroscopic random Paschen-Back effect in ultracold atomic gases
Quantum Gases
2017-06-28 v1
Abstract
We consider spin- and density-related properties of single-particle states in a one-dimensional system with random spin-orbit coupling. We show that the presence of an additional Zeeman field induces both nonlinear spin polarization and delocalization of states localized at , corresponding to a random macroscopic analogue of the Paschen-Back effect. While the conventional Paschen-Back effect corresponds to a saturated dependence of the spin polarization, here the gradual suppression of the spin-orbit coupling effects by the Zeeman field is responsible both for the spin saturation and delocalization of the particles.
Cite
@article{arxiv.1705.11157,
title = {Macroscopic random Paschen-Back effect in ultracold atomic gases},
author = {M. Modugno and E. Ya. Sherman and V. V. Konotop},
journal= {arXiv preprint arXiv:1705.11157},
year = {2017}
}
Comments
8 pages, 7 figures