English

Entanglement-enhanced correlation propagation in the one-dimensional SU($N$) Fermi-Hubbard model

Quantum Gases 2025-10-30 v1

Abstract

We investigate the dynamics of correlation propagation in the one-dimensional Fermi-Hubbard model with SU(NN) symmetry when the replusive-interaction strength is quenched from a large value, at which the ground state is a Mott-insulator with 1/N1/N filling, to an intermediate value. From approximate analytical insights based on a simple model that captures the essential physics of the doublon excitations, we show that entanglement in the initial state leads to collective enhancement of the propagation velocity vSU(N)v_{\text{SU}(N)} when N>2N>2, becoming equal to the velocity of the Bose-Hubbard model in the large-NN limit. These results are supported by numerical calculations of the density-density correlation in the quench dynamics for N=2,3,4,N=2,3,4, and 66.

Keywords

Cite

@article{arxiv.2510.25358,
  title  = {Entanglement-enhanced correlation propagation in the one-dimensional SU($N$) Fermi-Hubbard model},
  author = {Mathias Mikkelsen and Ippei Danshita},
  journal= {arXiv preprint arXiv:2510.25358},
  year   = {2025}
}

Comments

6 pages, 2 figures (Supplemental Material: 7 pages, 1 figure)