English

Realization of Hilbert Space Fragmentation and Fracton Dynamics in 2D

Strongly Correlated Electrons 2023-11-13 v1 Quantum Gases

Abstract

We propose the strongly tilted Bose-Hubbard model as a natural platform to explore Hilbert-space fragmentation (HSF) and fracton dynamics in two-dimensions, in a setup and regime readily accessible in optical lattice experiments. Using a perturbative ansatz, we find HSF when the model is tuned to the resonant limit of on-site interaction and tilted potential. First, we investigate the quench dynamics of this system and observe numerically that the relaxation dynamics strongly depends on the chosen initial state -- one of the key signature of HSF. Second, we identify fractonic excitations with restricted mobility leading to anomalous transport properties. Specifically, we find excitations that show one dimensional diffusion (z = 1/2) as well as excitations that show subdiffusive behaviour in two dimensions (z = 3/4). Using a cellular automaton, we analyze their dynamics and compare to an effective hydrodynamic description.

Keywords

Cite

@article{arxiv.2311.05695,
  title  = {Realization of Hilbert Space Fragmentation and Fracton Dynamics in 2D},
  author = {Melissa Will and Roderich Moessner and Frank Pollmann},
  journal= {arXiv preprint arXiv:2311.05695},
  year   = {2023}
}

Comments

4+4 pages, 7 figures