Probing Ferromagnetic Order in Few-Fermion Correlated Spin-Flip Dynamics
Abstract
We unravel the dynamical stability of a fully polarized one-dimensional ultracold few-fermion spin-1/2 gas subjected to inhomogeneous driving of the itinerant spins. Despite the unstable character of the total spin-polarization the existence of an interaction regime is demonstrated where the spin-correlations lead to almost maximally aligned spins throughout the dynamics. The resulting ferromagnetic order emerges from the build up of superpositions of states of maximal total spin. They comprise a decaying spin-polarization and a dynamical evolution towards an almost completely unpolarized NOON-like state. Via single-shot simulations we demonstrate that our theoretical predictions can be detected in state-of-the-art ultracold experiments.
Cite
@article{arxiv.1804.07199,
title = {Probing Ferromagnetic Order in Few-Fermion Correlated Spin-Flip Dynamics},
author = {G. M. Koutentakis and S. I. Mistakidis and P. Schmelcher},
journal= {arXiv preprint arXiv:1804.07199},
year = {2019}
}
Comments
18 pages, 7 figures