EXTASIS: Radio detection of cosmic rays at low frequencies

The detection of cosmic rays via the electric field (the so-called radio detection) is nowadays a fully operative technique. With the aim of exploring the low-frequency part of the emission spectrum (below 10 MHz), the EXTASIS experiment has been conceived. Located within the CODALEMA experiment at...

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Main Authors: García-Fernández Daniel, Charrier Didier, Dallier Richard, Escudie Antony, Lecacheux Alain, Martin Lilian, Revenu Benoît
Format: Article
Language:English
Published: EDP Sciences 2019-01-01
Series:EPJ Web of Conferences
Online Access:https://www.epj-conferences.org/articles/epjconf/pdf/2019/13/epjconf_isvhecri2018_15002.pdf
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spelling doaj-c9c8cfb11ffb4e4eae3b0eb5ea5cadcc2021-08-02T03:56:34ZengEDP SciencesEPJ Web of Conferences2100-014X2019-01-012081500210.1051/epjconf/201920815002epjconf_isvhecri2018_15002EXTASIS: Radio detection of cosmic rays at low frequenciesGarcía-Fernández DanielCharrier DidierDallier RichardEscudie AntonyLecacheux AlainMartin LilianRevenu BenoîtThe detection of cosmic rays via the electric field (the so-called radio detection) is nowadays a fully operative technique. With the aim of exploring the low-frequency part of the emission spectrum (below 10 MHz), the EXTASIS experiment has been conceived. Located within the CODALEMA experiment at the Nançay radio-observatory, EXTASIS measures the low-frequency emission coming from the extensive air showers created by cosmic rays. Being able to calculate the electric field at low frequency is crucial in order to correctly interpret our results. We present some results from the EXTASIS experiment and discuss the calculation of the low-frequency radio signal. We also present a new formula for the electric field of a particle track within two semi-infinite media (air and soil).https://www.epj-conferences.org/articles/epjconf/pdf/2019/13/epjconf_isvhecri2018_15002.pdf
collection DOAJ
language English
format Article
sources DOAJ
author García-Fernández Daniel
Charrier Didier
Dallier Richard
Escudie Antony
Lecacheux Alain
Martin Lilian
Revenu Benoît
spellingShingle García-Fernández Daniel
Charrier Didier
Dallier Richard
Escudie Antony
Lecacheux Alain
Martin Lilian
Revenu Benoît
EXTASIS: Radio detection of cosmic rays at low frequencies
EPJ Web of Conferences
author_facet García-Fernández Daniel
Charrier Didier
Dallier Richard
Escudie Antony
Lecacheux Alain
Martin Lilian
Revenu Benoît
author_sort García-Fernández Daniel
title EXTASIS: Radio detection of cosmic rays at low frequencies
title_short EXTASIS: Radio detection of cosmic rays at low frequencies
title_full EXTASIS: Radio detection of cosmic rays at low frequencies
title_fullStr EXTASIS: Radio detection of cosmic rays at low frequencies
title_full_unstemmed EXTASIS: Radio detection of cosmic rays at low frequencies
title_sort extasis: radio detection of cosmic rays at low frequencies
publisher EDP Sciences
series EPJ Web of Conferences
issn 2100-014X
publishDate 2019-01-01
description The detection of cosmic rays via the electric field (the so-called radio detection) is nowadays a fully operative technique. With the aim of exploring the low-frequency part of the emission spectrum (below 10 MHz), the EXTASIS experiment has been conceived. Located within the CODALEMA experiment at the Nançay radio-observatory, EXTASIS measures the low-frequency emission coming from the extensive air showers created by cosmic rays. Being able to calculate the electric field at low frequency is crucial in order to correctly interpret our results. We present some results from the EXTASIS experiment and discuss the calculation of the low-frequency radio signal. We also present a new formula for the electric field of a particle track within two semi-infinite media (air and soil).
url https://www.epj-conferences.org/articles/epjconf/pdf/2019/13/epjconf_isvhecri2018_15002.pdf
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