Training on Data Analysis Reproducibility via Containerization with Apptainer

Fuente: arXiv
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Main Authors: Candelaria, Roy Cruz, Deconinck, Wouter, Desai, Aman, Rodríguez, Guillermo Fidalgo, Villanueva, Michel Hernandez, Lieret, Kilian, Lukashenko, Valeriia, Malik, Sudhir, Mambelli, Marco, Mazurets, Tetiana, Briceño, Alexander Moreno, Rios-Tascon, Andres, Sharma, Richa
Format: Preprint
Published: 2026
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author Candelaria, Roy Cruz
Deconinck, Wouter
Desai, Aman
Rodríguez, Guillermo Fidalgo
Villanueva, Michel Hernandez
Lieret, Kilian
Lukashenko, Valeriia
Malik, Sudhir
Mambelli, Marco
Mazurets, Tetiana
Briceño, Alexander Moreno
Rios-Tascon, Andres
Sharma, Richa
author_facet Candelaria, Roy Cruz
Deconinck, Wouter
Desai, Aman
Rodríguez, Guillermo Fidalgo
Villanueva, Michel Hernandez
Lieret, Kilian
Lukashenko, Valeriia
Malik, Sudhir
Mambelli, Marco
Mazurets, Tetiana
Briceño, Alexander Moreno
Rios-Tascon, Andres
Sharma, Richa
contents We present the material and resources developed for training physicists on containerization technologies enabled by Apptainer. In the context of analysis preservation using Apptainer's capabilities, we have developed examples that execute common tools in High Energy Physics (HEP) and Nuclear Physics within containers. Training physicists on containerization technologies is of utmost importance in today's research landscape. By embracing these technologies, users can achieve enhanced reproducibility, portability, collaboration, and resource efficiency, assuring the conditions and integrity of the scientific analysis process. This training module,``Introduction to Apptainer/Singularity'', is part of the HEP Software Foundation Training Center, which aims to equip newcomers to the field of High Energy Physics with the necessary software skills and best practices.
format Preprint
id arxiv_https___arxiv_org_abs_2604_06244
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Training on Data Analysis Reproducibility via Containerization with Apptainer
Candelaria, Roy Cruz
Deconinck, Wouter
Desai, Aman
Rodríguez, Guillermo Fidalgo
Villanueva, Michel Hernandez
Lieret, Kilian
Lukashenko, Valeriia
Malik, Sudhir
Mambelli, Marco
Mazurets, Tetiana
Briceño, Alexander Moreno
Rios-Tascon, Andres
Sharma, Richa
Physics Education
High Energy Physics - Experiment
Data Analysis, Statistics and Probability
We present the material and resources developed for training physicists on containerization technologies enabled by Apptainer. In the context of analysis preservation using Apptainer's capabilities, we have developed examples that execute common tools in High Energy Physics (HEP) and Nuclear Physics within containers. Training physicists on containerization technologies is of utmost importance in today's research landscape. By embracing these technologies, users can achieve enhanced reproducibility, portability, collaboration, and resource efficiency, assuring the conditions and integrity of the scientific analysis process. This training module,``Introduction to Apptainer/Singularity'', is part of the HEP Software Foundation Training Center, which aims to equip newcomers to the field of High Energy Physics with the necessary software skills and best practices.
title Training on Data Analysis Reproducibility via Containerization with Apptainer
topic Physics Education
High Energy Physics - Experiment
Data Analysis, Statistics and Probability
url https://arxiv.org/abs/2604.06244