Quantum simulation of baryon scattering in SU(2) lattice gauge theory

Fuente: arXiv
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Main Authors: Barata, João, Hormaza, Juan, Kang, Zhong-Bo, Qian, Wenyang
Format: Preprint
Published: 2026
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author Barata, João
Hormaza, Juan
Kang, Zhong-Bo
Qian, Wenyang
author_facet Barata, João
Hormaza, Juan
Kang, Zhong-Bo
Qian, Wenyang
contents We present a first real-time study of hadronic scattering in a $(1+1)$-dimensional SU(2) lattice gauge theory with fundamental fermions using tensor-network techniques. Working in the gaugeless Hamiltonian formulation, we investigate scattering processes across sectors of fixed global baryon number $B = 0, 1, 2$, corresponding respectively to meson--meson, meson--baryon, and baryon--baryon collisions. At strong coupling, the $B = 0$ and $B = 2$ channels exhibit predominantly elastic dynamics closely resembling the U(1) Schwinger model. The mixed $B = 1$ sector displays qualitatively new behavior: meson and baryon wavepackets become entangled during the collision, with the slower state becoming spatially delocalized while the faster one propagates ballistically. We characterize these processes through local observables, entanglement entropy, and the information lattice.
format Preprint
id arxiv_https___arxiv_org_abs_2604_06716
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Quantum simulation of baryon scattering in SU(2) lattice gauge theory
Barata, João
Hormaza, Juan
Kang, Zhong-Bo
Qian, Wenyang
High Energy Physics - Lattice
High Energy Physics - Phenomenology
Nuclear Theory
Quantum Physics
We present a first real-time study of hadronic scattering in a $(1+1)$-dimensional SU(2) lattice gauge theory with fundamental fermions using tensor-network techniques. Working in the gaugeless Hamiltonian formulation, we investigate scattering processes across sectors of fixed global baryon number $B = 0, 1, 2$, corresponding respectively to meson--meson, meson--baryon, and baryon--baryon collisions. At strong coupling, the $B = 0$ and $B = 2$ channels exhibit predominantly elastic dynamics closely resembling the U(1) Schwinger model. The mixed $B = 1$ sector displays qualitatively new behavior: meson and baryon wavepackets become entangled during the collision, with the slower state becoming spatially delocalized while the faster one propagates ballistically. We characterize these processes through local observables, entanglement entropy, and the information lattice.
title Quantum simulation of baryon scattering in SU(2) lattice gauge theory
topic High Energy Physics - Lattice
High Energy Physics - Phenomenology
Nuclear Theory
Quantum Physics
url https://arxiv.org/abs/2604.06716