Thermalization and Sub-Poissonian Density Fluctuations in a Degenerate Molecular Fermi Gas
Quantum Gases
2020-01-29 v3 Atomic Physics
Chemical Physics
Abstract
We observe thermalization in the production of a degenerate Fermi gas of polar molecules. By measuring the atom--dimer elastic scattering cross section near the Feshbach resonance, we show that Feshbach molecules rapidly reach thermal equilibrium with both parent atomic species. Equilibrium is essentially maintained through coherent transfer to the ground state. Sub-Poissonian density fluctuations in Feshbach and ground-state molecules are measured, giving an independent characterization of degeneracy and directly probing the molecular Fermi--Dirac distribution.
Keywords
Cite
@article{arxiv.1909.00086,
title = {Thermalization and Sub-Poissonian Density Fluctuations in a Degenerate Molecular Fermi Gas},
author = {William G. Tobias and Kyle Matsuda and Giacomo Valtolina and Luigi De Marco and Jun-Ru Li and Jun Ye},
journal= {arXiv preprint arXiv:1909.00086},
year = {2020}
}
Comments
5 pages, 4 figures; supplementary material (6 pages, 5 figures)