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Bibliometrics for collaboration works

An important issue in bibliometrics is the weighing of co-authorship in the production of scientific collaborations, which are becoming the standard modality of research activity in many disciplines. The problem is especially relevant in the field of high-energy physics, where collaborations reach 3...

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Detalles Bibliográficos
Autores principales: Rossi, Paolo, Strumia, Alessandro, Torre, Riccardo
Lenguaje:eng
Publicado: 2019
Materias:
Acceso en línea:http://cds.cern.ch/record/2661807
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author Rossi, Paolo
Strumia, Alessandro
Torre, Riccardo
author_facet Rossi, Paolo
Strumia, Alessandro
Torre, Riccardo
author_sort Rossi, Paolo
collection CERN
description An important issue in bibliometrics is the weighing of co-authorship in the production of scientific collaborations, which are becoming the standard modality of research activity in many disciplines. The problem is especially relevant in the field of high-energy physics, where collaborations reach 3000 authors, but it can no longer be ignored also in other domains, like medicine or biology. We present theoretical and numerical arguments in favour of weighing the individual contributions as $1/N_{\rm aut}^\alpha$ where $N_{\rm aut}$ is the number of co-authors. When counting citations we suggest the exponent $\alpha\approx 1$, that corresponds to fractional counting. When counting the number of papers we suggest $\alpha \approx 1/3 - 1/2$, with the former (latter) value more appropriate for larger (smaller) collaborations. We expect and verify that the $h$ index scales as the square root of the average number of co-authors, and define a fractionalized $h$ index that does not scale with collaboration size.
id cern-2661807
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2019
record_format invenio
spelling cern-26618072023-03-14T19:20:53Zhttp://cds.cern.ch/record/2661807engRossi, PaoloStrumia, AlessandroTorre, RiccardoBibliometrics for collaboration worksphysics.soc-phOther Fields of Physicshep-phParticle Physics - Phenomenologycs.DLInformation Transfer and ManagementAn important issue in bibliometrics is the weighing of co-authorship in the production of scientific collaborations, which are becoming the standard modality of research activity in many disciplines. The problem is especially relevant in the field of high-energy physics, where collaborations reach 3000 authors, but it can no longer be ignored also in other domains, like medicine or biology. We present theoretical and numerical arguments in favour of weighing the individual contributions as $1/N_{\rm aut}^\alpha$ where $N_{\rm aut}$ is the number of co-authors. When counting citations we suggest the exponent $\alpha\approx 1$, that corresponds to fractional counting. When counting the number of papers we suggest $\alpha \approx 1/3 - 1/2$, with the former (latter) value more appropriate for larger (smaller) collaborations. We expect and verify that the $h$ index scales as the square root of the average number of co-authors, and define a fractionalized $h$ index that does not scale with collaboration size.arXiv:1902.01693oai:cds.cern.ch:26618072019
spellingShingle physics.soc-ph
Other Fields of Physics
hep-ph
Particle Physics - Phenomenology
cs.DL
Information Transfer and Management
Rossi, Paolo
Strumia, Alessandro
Torre, Riccardo
Bibliometrics for collaboration works
title Bibliometrics for collaboration works
title_full Bibliometrics for collaboration works
title_fullStr Bibliometrics for collaboration works
title_full_unstemmed Bibliometrics for collaboration works
title_short Bibliometrics for collaboration works
title_sort bibliometrics for collaboration works
topic physics.soc-ph
Other Fields of Physics
hep-ph
Particle Physics - Phenomenology
cs.DL
Information Transfer and Management
url http://cds.cern.ch/record/2661807
work_keys_str_mv AT rossipaolo bibliometricsforcollaborationworks
AT strumiaalessandro bibliometricsforcollaborationworks
AT torrericcardo bibliometricsforcollaborationworks