Published October 28, 2024
| Version v2.1.0
Dataset
Open
RadioMonteCarLow 2 Phase I
Creators
- The RadioMonteCarLow 2 Working Group
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Aliberti, Riccardo1
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Beltrame, Paolo2
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Budassi, Ettore3, 4
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Carloni Calame, Carlo M.4
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Colangelo, Gilberto5
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Cotrozzi, Lorenzo2
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Denig, Achim1
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Driutti, Anna6, 7
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Engel, Tim8
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Flower, Lois9, 2
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Gurgone, Andrea3, 4
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Hoferichter, Martin5
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Ignatov, Fedor2
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Kollatzsch, Sophie10, 11
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Kubis, Bastian12
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Kupsc, Andrzej13, 14
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Lange, Fabian11, 10
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Lusiani, Alberto15, 6
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Müller, Stefan E.16
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Paltrinieri, Jérémy2
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Petit Rosàs, Pau2
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Piccinini, Fulvio4
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Price, Alan17
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Punzi, Lorenzo6, 15
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Rocco, Marco10, 18, 19
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Shekhovtsova, Olga20, 21
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Signer, Adrian11, 10
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Siódmok, Andrzej17
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Stagnitto, Giovanni22
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Stoffer, Peter10, 11
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Teubner, Thomas2
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Torres Bobadilla, William J.2
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Ucci, Francesco P.4, 3
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Ulrich, Yannick5, 2
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Venanzoni, Graziano2, 6
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1.
Johannes Gutenberg University Mainz
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2.
University of Liverpool
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3.
University of Pavia
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4.
Istituto Nazionale di Fisica Nucleare, Sezione di Pavia
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5.
University of Bern
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6.
Istituto Nazionale di Fisica Nucleare, Sezione di Pisa
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7.
University of Pisa
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8.
University of Freiburg
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9.
Durham University
-
10.
Paul Scherrer Institute
- 11. University of Zurich
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12.
University of Bonn
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13.
Uppsala University
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14.
National Centre for Nuclear Research
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15.
Scuola Normale Superiore
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16.
Helmholtz-Zentrum Dresden-Rossendorf
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17.
Jagiellonian University
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18.
University of Turin
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19.
Istituto Nazionale di Fisica Nucleare, Sezione di Torino
-
20.
Kharkiv Institute of Physics and Technology
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21.
Istituto Nazionale di Fisica Nucleare, Sezione di Perugia
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22.
University of Milano-Bicocca
Description
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.
Files
README.md
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Additional details
Related works
- Is continued by
- Dataset: https://gitlab.com/RadioMonteCarlow2/monte-carlo-results (URL)
- Plot: https://gitlab.com/RadioMonteCarlow2/plots (URL)
- Is documented by
- Publication: arXiv:2410.22882 (arXiv)
Software
- Repository URL
- https://gitlab.com/RadioMonteCarlow2/
- Programming language
- Python
- Development Status
- Active