Scattering from an external field in quantum chromodynamics at high energies: from foundations to interdisciplinary connections

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Main Authors: Angelopoulou, Athanasia-Konstantina, Le, Anh Dung, Munier, Stéphane
Format: Preprint
Published: 2023
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author Angelopoulou, Athanasia-Konstantina
Le, Anh Dung
Munier, Stéphane
author_facet Angelopoulou, Athanasia-Konstantina
Le, Anh Dung
Munier, Stéphane
contents We review the factorization of the $S$-matrix elements in the context of particle scattering off an external field, which can serve as a model for the field of a large nucleus. The factorization takes the form of a convolution of light cone wave functions describing the physical incoming and outgoing states in terms of bare partons, and products of Wilson lines. The latter represent the interaction between the bare partons and the external field. Specializing to elastic scattering amplitudes of onia at very high energies, we introduce the color dipole model, which formulates the calculation of the modulus-squared of the wave functions in quantum chromodynamics with the help of a branching random walk, and the scattering amplitudes as observables on this classical stochastic process. Methods developed for general branching processes produce analytical formulas for the asymptotics of such observables, and thus enable one to derive exact large-rapidity expressions for onium-nucleus cross sections, from which electron-nucleus cross sections may be inferred.
format Preprint
id arxiv_https___arxiv_org_abs_2311_14796
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Scattering from an external field in quantum chromodynamics at high energies: from foundations to interdisciplinary connections
Angelopoulou, Athanasia-Konstantina
Le, Anh Dung
Munier, Stéphane
High Energy Physics - Phenomenology
We review the factorization of the $S$-matrix elements in the context of particle scattering off an external field, which can serve as a model for the field of a large nucleus. The factorization takes the form of a convolution of light cone wave functions describing the physical incoming and outgoing states in terms of bare partons, and products of Wilson lines. The latter represent the interaction between the bare partons and the external field. Specializing to elastic scattering amplitudes of onia at very high energies, we introduce the color dipole model, which formulates the calculation of the modulus-squared of the wave functions in quantum chromodynamics with the help of a branching random walk, and the scattering amplitudes as observables on this classical stochastic process. Methods developed for general branching processes produce analytical formulas for the asymptotics of such observables, and thus enable one to derive exact large-rapidity expressions for onium-nucleus cross sections, from which electron-nucleus cross sections may be inferred.
title Scattering from an external field in quantum chromodynamics at high energies: from foundations to interdisciplinary connections
topic High Energy Physics - Phenomenology
url https://arxiv.org/abs/2311.14796