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Enhanced detection of terrestrial gamma‐ray flashes by AGILE

At the end of March 2015 the onboard software configuration of the Astrorivelatore Gamma a Immagini Leggero (AGILE) satellite was modified in order to disable the veto signal of the anticoincidence shield for the minicalorimeter instrument. The motivation for such a change was the understanding that...

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Autores principales: Marisaldi, M., Argan, A., Ursi, A., Gjesteland, T., Fuschino, F., Labanti, C., Galli, M., Tavani, M., Pittori, C., Verrecchia, F., D'Amico, F., Østgaard, N., Mereghetti, S., Campana, R., Cattaneo, P.W., Bulgarelli, A., Colafrancesco, S., Dietrich, S., Longo, F., Gianotti, F., Giommi, P., Rappoldi, A., Trifoglio, M., Trois, A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5054821/
https://www.ncbi.nlm.nih.gov/pubmed/27773951
http://dx.doi.org/10.1002/2015GL066100
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author Marisaldi, M.
Argan, A.
Ursi, A.
Gjesteland, T.
Fuschino, F.
Labanti, C.
Galli, M.
Tavani, M.
Pittori, C.
Verrecchia, F.
D'Amico, F.
Østgaard, N.
Mereghetti, S.
Campana, R.
Cattaneo, P.W.
Bulgarelli, A.
Colafrancesco, S.
Dietrich, S.
Longo, F.
Gianotti, F.
Giommi, P.
Rappoldi, A.
Trifoglio, M.
Trois, A.
author_facet Marisaldi, M.
Argan, A.
Ursi, A.
Gjesteland, T.
Fuschino, F.
Labanti, C.
Galli, M.
Tavani, M.
Pittori, C.
Verrecchia, F.
D'Amico, F.
Østgaard, N.
Mereghetti, S.
Campana, R.
Cattaneo, P.W.
Bulgarelli, A.
Colafrancesco, S.
Dietrich, S.
Longo, F.
Gianotti, F.
Giommi, P.
Rappoldi, A.
Trifoglio, M.
Trois, A.
author_sort Marisaldi, M.
collection PubMed
description At the end of March 2015 the onboard software configuration of the Astrorivelatore Gamma a Immagini Leggero (AGILE) satellite was modified in order to disable the veto signal of the anticoincidence shield for the minicalorimeter instrument. The motivation for such a change was the understanding that the dead time induced by the anticoincidence prevented the detection of a large fraction of Terrestrial Gamma‐Ray Flashes (TGFs). The configuration change was highly successful resulting in an increase of one order of magnitude in TGF detection rate. As expected, the largest fraction of the new events has short duration (<100 μs), and part of them has simultaneous association with lightning sferics detected by the World Wide Lightning Location Network. The new configuration provides the largest TGF detection rate surface density (TGFs/km(2)/yr) to date, opening prospects for improved correlation studies with lightning and atmospheric parameters on short spatial and temporal scales along the equatorial region.
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spelling pubmed-50548212016-10-19 Enhanced detection of terrestrial gamma‐ray flashes by AGILE Marisaldi, M. Argan, A. Ursi, A. Gjesteland, T. Fuschino, F. Labanti, C. Galli, M. Tavani, M. Pittori, C. Verrecchia, F. D'Amico, F. Østgaard, N. Mereghetti, S. Campana, R. Cattaneo, P.W. Bulgarelli, A. Colafrancesco, S. Dietrich, S. Longo, F. Gianotti, F. Giommi, P. Rappoldi, A. Trifoglio, M. Trois, A. Geophys Res Lett Research Letters At the end of March 2015 the onboard software configuration of the Astrorivelatore Gamma a Immagini Leggero (AGILE) satellite was modified in order to disable the veto signal of the anticoincidence shield for the minicalorimeter instrument. The motivation for such a change was the understanding that the dead time induced by the anticoincidence prevented the detection of a large fraction of Terrestrial Gamma‐Ray Flashes (TGFs). The configuration change was highly successful resulting in an increase of one order of magnitude in TGF detection rate. As expected, the largest fraction of the new events has short duration (<100 μs), and part of them has simultaneous association with lightning sferics detected by the World Wide Lightning Location Network. The new configuration provides the largest TGF detection rate surface density (TGFs/km(2)/yr) to date, opening prospects for improved correlation studies with lightning and atmospheric parameters on short spatial and temporal scales along the equatorial region. John Wiley and Sons Inc. 2015-11-16 2015-11-06 /pmc/articles/PMC5054821/ /pubmed/27773951 http://dx.doi.org/10.1002/2015GL066100 Text en ©2015. The Authors. This is an open access article under the terms of the Creative Commons Attribution‐NonCommercial‐NoDerivs (http://creativecommons.org/licenses/by-nc-nd/4.0/) License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle Research Letters
Marisaldi, M.
Argan, A.
Ursi, A.
Gjesteland, T.
Fuschino, F.
Labanti, C.
Galli, M.
Tavani, M.
Pittori, C.
Verrecchia, F.
D'Amico, F.
Østgaard, N.
Mereghetti, S.
Campana, R.
Cattaneo, P.W.
Bulgarelli, A.
Colafrancesco, S.
Dietrich, S.
Longo, F.
Gianotti, F.
Giommi, P.
Rappoldi, A.
Trifoglio, M.
Trois, A.
Enhanced detection of terrestrial gamma‐ray flashes by AGILE
title Enhanced detection of terrestrial gamma‐ray flashes by AGILE
title_full Enhanced detection of terrestrial gamma‐ray flashes by AGILE
title_fullStr Enhanced detection of terrestrial gamma‐ray flashes by AGILE
title_full_unstemmed Enhanced detection of terrestrial gamma‐ray flashes by AGILE
title_short Enhanced detection of terrestrial gamma‐ray flashes by AGILE
title_sort enhanced detection of terrestrial gamma‐ray flashes by agile
topic Research Letters
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5054821/
https://www.ncbi.nlm.nih.gov/pubmed/27773951
http://dx.doi.org/10.1002/2015GL066100
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