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arXiv:2501.18301·v3·High Energy Physics — Lattice

Tensor-network toolbox for probing dynamics of non-Abelian gauge theories

Emil Mathew🇮🇳 · Navya Gupta🇺🇸 · Saurabh V. Kadam🇺🇸 · Aniruddha Bapat · Jesse Stryker🇺🇸 · Zohreh Davoudi🇺🇸 · Indrakshi Raychowdhury🇮🇳

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Abstract

Tensor-network methods enable probing dynamics of strongly interacting quantum many-body systems, including gauge theories, via Hamiltonian simulation, hence bypassing sign problems. They also have the potential to inform efficient quantum-simulation algorithms of the same theories. We develop and benchmark a matrix-product-state ansatz for the SU(2) lattice gauge theory using the loop-string-hadron formulation. This formulation has been demonstrated to be advantageous in Hamiltonian simulation of non-Abelian gauge theories. It is applicable to both SU(2) and SU(3) gauge groups, to periodic and open boundary conditions, and to 1+1 and higher dimensions. In this work, we report on progress in computing static and dynamical observables in a SU(2) gauge theory in (1+1)D, pushing the boundary of existing studies.

Comments: Contribution to Proceedings of the 41st International Symposium on Lattice Field Theory (LATTICE2024). Updated author list. Contents match with the presentation given at LATTICE 2024

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