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Measuring a Cherenkov ring in the radio emission from air showers at 110-190 MHz with LOFAR

Nelles, A. (author)
Schellart, P. (author)
Buitink, S. (author)
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Corstanje, A. (author)
de Vries, K. D. (author)
Enriquez, J. E. (author)
Falcke, H. (author)
Frieswijk, W. (author)
Hörandel, J. R. (author)
Scholten, O. (author)
ter Veen, S. (author)
Thoudam, Satyendra (author)
Radboud University Nijmegen, The Netherlands
van den Akker, M. (author)
Anderson, J. (author)
Asgekar, A. (author)
Bell, M. E. (author)
Bentum, M. J. (author)
Bernardi, G. (author)
Best, P. (author)
Bregman, J. (author)
Breitling, F. (author)
Broderick, J. (author)
Brouw, W. N. (author)
Brüggen, M. (author)
Butcher, H. R. (author)
Ciardi, B. (author)
Deller, A. (author)
Duscha, S. (author)
Eislöffel, J. (author)
Fallows, R. A. (author)
Garrett, M. A. (author)
Gunst, A. W. (author)
Hassall, T. E. (author)
Heald, G. (author)
Horneffer, A. (author)
Iacobelli, M. (author)
Juette, E. (author)
Karastergiou, A. (author)
Kondratiev, V. I. (author)
Kramer, M. (author)
Kuniyoshi, M. (author)
Kuper, G. (author)
Maat, P. (author)
Mann, G. (author)
Mevius, M. (author)
Norden, M. J. (author)
Paas, H. (author)
Pandey-Pommier, M. (author)
Pietka, G. (author)
Pizzo, R. (author)
Polatidis, A. G. (author)
Reich, W. (author)
Röttgering, H. (author)
Scaife, A. M. M. (author)
Schwarz, D. (author)
Smirnov, O. (author)
Stappers, B. W. (author)
Steinmetz, M. (author)
Stewart, A. (author)
Tagger, M. (author)
Tang, Y. (author)
Tasse, C. (author)
Vermeulen, R. (author)
Vocks, C. (author)
van Weeren, R. J. (author)
Wijnholds, S. J. (author)
Wucknitz, O. (author)
Yatawatta, S. (author)
Zarka, P. (author)
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 (creator_code:org_t)
Elsevier BV, 2015
2015
English.
In: Astroparticle physics. - : Elsevier BV. - 0927-6505 .- 1873-2852. ; 65, s. 11-21
  • Journal article (peer-reviewed)
Abstract Subject headings
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  • Measuring radio emission from air showers offers a novel way to determine properties of the primary cosmic rays such as their mass and energy. Theory predicts that relativistic time compression effects lead to a ring of amplified emission which starts to dominate the emission pattern for frequencies above ∼100∼100 MHz. In this article we present the first detailed measurements of this structure. Ring structures in the radio emission of air showers are measured with the LOFAR radio telescope in the frequency range of 110–190 MHz. These data are well described by CoREAS simulations. They clearly confirm the importance of including the index of refraction of air as a function of height. Furthermore, the presence of the Cherenkov ring offers the possibility for a geometrical measurement of the depth of shower maximum, which in turn depends on the mass of the primary particle.

Subject headings

NATURVETENSKAP  -- Fysik -- Astronomi, astrofysik och kosmologi (hsv//swe)
NATURAL SCIENCES  -- Physical Sciences -- Astronomy, Astrophysics and Cosmology (hsv//eng)

Keyword

Cosmic rays
Extensive air showers
Radio emission
LOFAR
Time-compression
Astroparticle Physics
Astropartikelfysik

Publication and Content Type

ref (subject category)
art (subject category)

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