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author Aliberti, Riccardo
Beltrame, Paolo
Budassi, Ettore
Calame, Carlo M. Carloni
Colangelo, Gilberto
Cotrozzi, Lorenzo
Denig, Achim
Driutti, Anna
Engel, Tim
Flower, Lois
Gurgone, Andrea
Hoferichter, Martin
Ignatov, Fedor
Kollatzsch, Sophie
Kubis, Bastian
Kupść, Andrzej
Lange, Fabian
Lusiani, Alberto
Müller, Stefan E.
Paltrinieri, Jérémy
Rosàs, Pau Petit
Piccinini, Fulvio
Price, Alan
Punzi, Lorenzo
Rocco, Marco
Shekhovtsova, Olga
Siódmok, Andrzej
Signer, Adrian
Stagnitto, Giovanni
Stoffer, Peter
Teubner, Thomas
Bobadilla, William J. Torres
Ucci, Francesco P.
Ulrich, Yannick
Venanzoni, Graziano
author_facet Aliberti, Riccardo
Beltrame, Paolo
Budassi, Ettore
Calame, Carlo M. Carloni
Colangelo, Gilberto
Cotrozzi, Lorenzo
Denig, Achim
Driutti, Anna
Engel, Tim
Flower, Lois
Gurgone, Andrea
Hoferichter, Martin
Ignatov, Fedor
Kollatzsch, Sophie
Kubis, Bastian
Kupść, Andrzej
Lange, Fabian
Lusiani, Alberto
Müller, Stefan E.
Paltrinieri, Jérémy
Rosàs, Pau Petit
Piccinini, Fulvio
Price, Alan
Punzi, Lorenzo
Rocco, Marco
Shekhovtsova, Olga
Siódmok, Andrzej
Signer, Adrian
Stagnitto, Giovanni
Stoffer, Peter
Teubner, Thomas
Bobadilla, William J. Torres
Ucci, Francesco P.
Ulrich, Yannick
Venanzoni, Graziano
contents We present the results of Phase I of an ongoing review of Monte Carlo tools relevant for low-energy hadronic cross sections. This includes a detailed comparison of Monte Carlo codes for electron-positron scattering into a muon pair, pion pair, and electron pair, for scan and radiative-return experiments. After discussing the various approaches that are used and effects that are included, we show differential cross sections obtained with AfkQed, BabaYaga@NLO, KKMC, MCGPJ, McMule, Phokhara, and Sherpa, for scenarios that are inspired by experiments providing input for the dispersive evaluation of the hadronic vacuum polarisation.
format Preprint
id arxiv_https___arxiv_org_abs_2410_22882
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Radiative corrections and Monte Carlo tools for low-energy hadronic cross sections in $e^+ e^-$ collisions
Aliberti, Riccardo
Beltrame, Paolo
Budassi, Ettore
Calame, Carlo M. Carloni
Colangelo, Gilberto
Cotrozzi, Lorenzo
Denig, Achim
Driutti, Anna
Engel, Tim
Flower, Lois
Gurgone, Andrea
Hoferichter, Martin
Ignatov, Fedor
Kollatzsch, Sophie
Kubis, Bastian
Kupść, Andrzej
Lange, Fabian
Lusiani, Alberto
Müller, Stefan E.
Paltrinieri, Jérémy
Rosàs, Pau Petit
Piccinini, Fulvio
Price, Alan
Punzi, Lorenzo
Rocco, Marco
Shekhovtsova, Olga
Siódmok, Andrzej
Signer, Adrian
Stagnitto, Giovanni
Stoffer, Peter
Teubner, Thomas
Bobadilla, William J. Torres
Ucci, Francesco P.
Ulrich, Yannick
Venanzoni, Graziano
High Energy Physics - Phenomenology
High Energy Physics - Experiment
We present the results of Phase I of an ongoing review of Monte Carlo tools relevant for low-energy hadronic cross sections. This includes a detailed comparison of Monte Carlo codes for electron-positron scattering into a muon pair, pion pair, and electron pair, for scan and radiative-return experiments. After discussing the various approaches that are used and effects that are included, we show differential cross sections obtained with AfkQed, BabaYaga@NLO, KKMC, MCGPJ, McMule, Phokhara, and Sherpa, for scenarios that are inspired by experiments providing input for the dispersive evaluation of the hadronic vacuum polarisation.
title Radiative corrections and Monte Carlo tools for low-energy hadronic cross sections in $e^+ e^-$ collisions
topic High Energy Physics - Phenomenology
High Energy Physics - Experiment
url https://arxiv.org/abs/2410.22882