Firmamento: a multi-messenger astronomy tool for citizen and professional scientists

Fuente: arXiv
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Autores principales: Tripathi, Dhurba, Giommi, Paolo, Di Giovanni, Adriano, Almansoori, Rawdha R., Hamly, Nouf Al, Arneodo, Francesco, Macciò, Andrea V., Puccetti, Goffredo, de Almeida, Ulisses Barres, Brandt, Carlos, Di Pippo, Simonetta, Doro, Michele, Israyelyan, David, Pollock, Andrew M. T., Sahakyan, Narek
Formato: Preprint
Publicado: 2023
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author Tripathi, Dhurba
Giommi, Paolo
Di Giovanni, Adriano
Almansoori, Rawdha R.
Hamly, Nouf Al
Arneodo, Francesco
Macciò, Andrea V.
Puccetti, Goffredo
de Almeida, Ulisses Barres
Brandt, Carlos
Di Pippo, Simonetta
Doro, Michele
Israyelyan, David
Pollock, Andrew M. T.
Sahakyan, Narek
author_facet Tripathi, Dhurba
Giommi, Paolo
Di Giovanni, Adriano
Almansoori, Rawdha R.
Hamly, Nouf Al
Arneodo, Francesco
Macciò, Andrea V.
Puccetti, Goffredo
de Almeida, Ulisses Barres
Brandt, Carlos
Di Pippo, Simonetta
Doro, Michele
Israyelyan, David
Pollock, Andrew M. T.
Sahakyan, Narek
contents Firmamento (https://firmamento.hosting.nyu.edu) is a new-concept web-based and mobile-friendly data analysis tool dedicated to multi-frequency/multi-messenger emitters, as exemplified by blazars. Although initially intended to support a citizen researcher project at New York University-Abu Dhabi (NYUAD), Firmamento has evolved to be a valuable tool for professional researchers due to its broad accessibility to classical and contemporary multi-frequency open data sets. From this perspective Firmamento facilitates the identification of new blazars and other multi-frequency emitters in the localisation uncertainty regions of sources detected by current and planned observatories such as Fermi-LAT, Swift , eROSITA, CTA, ASTRI Mini-Array, LHAASO, IceCube, KM3Net, SWGO, etc. The multi-epoch and multi-wavelength data that Firmamento retrieves from over 90 remote and local catalogues and databases can be used to characterise the spectral energy distribution and the variability properties of cosmic sources as well as to constrain physical models. Firmamento distinguishes itself from other online platforms due to its high specialization, the use of machine learning and other methodologies to characterise the data and for its commitment to inclusivity. From this particular perspective, its objective is to assist both researchers and citizens interested in science, strengthening a trend that is bound to gain momentum in the coming years as data retrieval facilities improve in power and machine learning/artificial intelligence tools become more widely available
format Preprint
id arxiv_https___arxiv_org_abs_2311_15102
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Firmamento: a multi-messenger astronomy tool for citizen and professional scientists
Tripathi, Dhurba
Giommi, Paolo
Di Giovanni, Adriano
Almansoori, Rawdha R.
Hamly, Nouf Al
Arneodo, Francesco
Macciò, Andrea V.
Puccetti, Goffredo
de Almeida, Ulisses Barres
Brandt, Carlos
Di Pippo, Simonetta
Doro, Michele
Israyelyan, David
Pollock, Andrew M. T.
Sahakyan, Narek
High Energy Astrophysical Phenomena
Instrumentation and Methods for Astrophysics
Firmamento (https://firmamento.hosting.nyu.edu) is a new-concept web-based and mobile-friendly data analysis tool dedicated to multi-frequency/multi-messenger emitters, as exemplified by blazars. Although initially intended to support a citizen researcher project at New York University-Abu Dhabi (NYUAD), Firmamento has evolved to be a valuable tool for professional researchers due to its broad accessibility to classical and contemporary multi-frequency open data sets. From this perspective Firmamento facilitates the identification of new blazars and other multi-frequency emitters in the localisation uncertainty regions of sources detected by current and planned observatories such as Fermi-LAT, Swift , eROSITA, CTA, ASTRI Mini-Array, LHAASO, IceCube, KM3Net, SWGO, etc. The multi-epoch and multi-wavelength data that Firmamento retrieves from over 90 remote and local catalogues and databases can be used to characterise the spectral energy distribution and the variability properties of cosmic sources as well as to constrain physical models. Firmamento distinguishes itself from other online platforms due to its high specialization, the use of machine learning and other methodologies to characterise the data and for its commitment to inclusivity. From this particular perspective, its objective is to assist both researchers and citizens interested in science, strengthening a trend that is bound to gain momentum in the coming years as data retrieval facilities improve in power and machine learning/artificial intelligence tools become more widely available
title Firmamento: a multi-messenger astronomy tool for citizen and professional scientists
topic High Energy Astrophysical Phenomena
Instrumentation and Methods for Astrophysics
url https://arxiv.org/abs/2311.15102