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arXiv:2306.12324·v2·High Energy Physics — Lattice

deformed formulation of Hamiltonian SU(3) Yang-Mills theory

Tomoya Hayata🇯🇵 · Yoshimasa Hidaka🇯🇵

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Abstract

We study Yang-Mills theory in dimensions based on networks of Wilson lines. With the help of the deformation, networks respect the (discretized) gauge symmetry as a quantum group, i.e., , and may enable implementations of Yang-Mills theory in quantum and classical algorithms by referring to those of the stringnet model. As a demonstration, we perform a mean-field computation of the groundstate of Yang-Mills theory, which is in good agreement with the conventional Monte Carlo simulation by taking sufficiently large . The variational ansatz of the mean-field computation can be represented by the tensor networks called infinite projected entangled pair states. The success of the mean-field computation indicates that the essential features of Yang-Mills theory are well described by tensor networks, so that they may be useful in numerical simulations of Yang-Mills theory.

Comments: 25 pages, 7 figures, (v2) version accepted for publication in JHEP

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