Exclusive Scattering Channels from Entanglement Structure in Real-Time Simulations

Fuente: arXiv
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Main Author: Zemlevskiy, Nikita A.
Format: Preprint
Published: 2026
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author Zemlevskiy, Nikita A.
author_facet Zemlevskiy, Nikita A.
contents A scattering event in a quantum field theory is a coherent superposition of all processes consistent with its symmetries and kinematics. While real-time simulations have progressed toward resolving individual channels, existing approaches rely on knowledge of the asymptotic particle wavefunctions. This work introduces an experimentally inspired method to isolate scattering channels in Matrix Product State simulations based on the entanglement structure of the late-time wavefunction. Schmidt decompositions at spatial bipartitions of the post-scattering state identify elastic and inelastic contributions, enabling deterministic detection of outgoing particles of specific species. This method may be used in settings beyond scattering and is applied to detect heavy particles produced in a collision in the one-dimensional Ising field theory. Natural extensions to quantum simulations of other systems and higher-order processes are discussed.
format Preprint
id arxiv_https___arxiv_org_abs_2603_15621
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Exclusive Scattering Channels from Entanglement Structure in Real-Time Simulations
Zemlevskiy, Nikita A.
Quantum Physics
High Energy Physics - Lattice
High Energy Physics - Phenomenology
Nuclear Theory
A scattering event in a quantum field theory is a coherent superposition of all processes consistent with its symmetries and kinematics. While real-time simulations have progressed toward resolving individual channels, existing approaches rely on knowledge of the asymptotic particle wavefunctions. This work introduces an experimentally inspired method to isolate scattering channels in Matrix Product State simulations based on the entanglement structure of the late-time wavefunction. Schmidt decompositions at spatial bipartitions of the post-scattering state identify elastic and inelastic contributions, enabling deterministic detection of outgoing particles of specific species. This method may be used in settings beyond scattering and is applied to detect heavy particles produced in a collision in the one-dimensional Ising field theory. Natural extensions to quantum simulations of other systems and higher-order processes are discussed.
title Exclusive Scattering Channels from Entanglement Structure in Real-Time Simulations
topic Quantum Physics
High Energy Physics - Lattice
High Energy Physics - Phenomenology
Nuclear Theory
url https://arxiv.org/abs/2603.15621