A proposal for realising quantum scars in the tilted 1D Fermi-Hubbard model
Abstract
Motivated by recent observations of ergodicity breaking due to Hilbert space fragmentation in 1D Fermi-Hubbard chains with a tilted potential [Scherg et al., arXiv:2010.12965], we show that the same system also hosts quantum many-body scars in a regime at electronic filling factor . We numerically demonstrate that the scarring phenomenology in this model is similar to other known realisations such as Rydberg atom chains, including persistent dynamical revivals and ergodicity-breaking many-body eigenstates. At the same time, we show that the mechanism of scarring in the Fermi-Hubbard model is different from other examples in the literature: the scars originate from a subgraph, representing a free spin-1 paramagnet, which is weakly connected to the rest of the Hamiltonian's adjacency graph. Our work demonstrates that correlated fermions in tilted optical lattices provide a platform for understanding the interplay of many-body scarring and other forms of ergodicity breaking, such as localisation and Hilbert space fragmentation.
Keywords
Cite
@article{arxiv.2102.01675,
title = {A proposal for realising quantum scars in the tilted 1D Fermi-Hubbard model},
author = {Jean-Yves Desaules and Ana Hudomal and Christopher J. Turner and Zlatko Papić},
journal= {arXiv preprint arXiv:2102.01675},
year = {2021}
}
Comments
13 pages, 15 figures