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Achieving the quantum field theory limit in far-from-equilibrium quantum link models

Quantum Gases 2022-12-20 v3 Strongly Correlated Electrons High Energy Physics - Lattice Quantum Physics

Abstract

Realizations of gauge theories in setups of quantum synthetic matter open up the possibility of probing salient exotic phenomena in condensed matter and high-energy physics, along with potential applications in quantum information and science technologies. In light of the impressive ongoing efforts to achieve such realizations, a fundamental question regarding quantum link model regularizations of lattice gauge theories is how faithfully they capture the quantum field theory limit of gauge theories. Recent work [Zache, Van Damme, Halimeh, Hauke, and Banerjee, at https://journals.aps.org/prd/abstract/10.1103/PhysRevD.106.L091502 has shown through analytic derivations, exact diagonalization, and infinite matrix product state calculations that the low-energy physics of 1+11+1D U(1)\mathrm{U}(1) quantum link models approaches the quantum field theory limit already at small link spin length SS. Here, we show that the approach to this limit also lends itself to the far-from-equilibrium quench dynamics of lattice gauge theories, as demonstrated by our numerical simulations of the Loschmidt return rate and the chiral condensate in infinite matrix product states, which work directly in the thermodynamic limit. Similar to our findings in equilibrium that show a distinct behavior between half-integer and integer link spin lengths, we find that criticality emerging in the Loschmidt return rate is fundamentally different between half-integer and integer spin quantum link models in the regime of strong electric-field coupling. Our results further affirm that state-of-the-art finite-size ultracold-atom and NISQ-device implementations of quantum link lattice gauge theories have the real potential to simulate their quantum field theory limit even in the far-from-equilibrium regime.

Keywords

Cite

@article{arxiv.2112.04501,
  title  = {Achieving the quantum field theory limit in far-from-equilibrium quantum link models},
  author = {Jad C. Halimeh and Maarten Van Damme and Torsten V. Zache and Debasish Banerjee and Philipp Hauke},
  journal= {arXiv preprint arXiv:2112.04501},
  year   = {2022}
}

Comments

Accepted in Quantum

R2 v1 2026-06-24T08:09:37.027Z