DOE OSTI · 3402111
Confinement and String Breaking in the Compact Abelian Higgs Model
Abstract
While real-time simulation of Quantum Chromodynamics remains technologically out of reach, simplified models for studying elements of QCD phenomenology abound. This work presents a simple model, a spin-1 truncation of the Compact Abelian Higgs Model simulated on qutrit sites, in which confinement and string breaking is accessible to current simulation methods. In the low-energy regime of 1+1D scalar electrodynamics, the heavy modes are integrated out, producing a spin chain effective Hamiltonian in which Gauss' law is implicitly satisfied. We study the spectrum of string-like excitations using DMRG methods on the order of 100 sites. We demonstrate that an added, local chemical potential, playing a role analogous to external charges, permits parameter-dependent measurements of physical features of interest like the string tension and effective meson mass. Varying the chemical potential also permits a characterization of string stability not assessed in prior studies of confining lattice models.
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Senseman, Blake [Iowa U.], Ozzello, Zane [Iowa U.], Meurice, Yannick [Iowa U.], Mrenna, Stephen [Fermilab]. 2026-07-30. Confinement and String Breaking in the Compact Abelian Higgs Model. https://www.osti.gov/biblio/3402111
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