Calibration of the logarithmic-periodic dipole antenna (LPDA) radio stations at the Pierre Auger Observatory using an octocopter

An in-situ calibration of a logarithmic periodic dipole antenna with a frequency coverage of 30 MHz to 80 MHz is performed. Such antennas are part of a radio station system used for detection of cosmic ray induced air showers at the Engineering Radio Array of the Pierre Auger Observatory, the so-cal...

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Veröffentlicht in:JINST 2017-10, Vol.12 (10), p.T10005-T10005
Hauptverfasser: Aab, A., Abreu, P., Aglietta, M., Samarai, I. Al, Albuquerque, I.F.M., Allekotte, I., Almela, A., Castillo, J. Alvarez, Alvarez-Muñiz, J., Anastasi, G.A., Anchordoqui, L., Andrada, B., Andringa, S., Aramo, C., Arqueros, F., Arsene, N., Asorey, H., Assis, P., Aublin, J., Avila, G., Badescu, A.M., Balaceanu, A., Barbato, F., Luz, R.J. Barreira, Beatty, J.J., Becker, K.H., Bellido, J.A., Berat, C., Bertaina, M.E., Bertou, X., Biermann, P.L., Billoir, P., Biteau, J., Blaess, S.G., Blanco, A., Blazek, J., Bleve, C., Boháčová, M., Boncioli, D., Bonifazi, C., Borodai, N., Botti, A.M., Brack, J., Brancus, I., Bretz, T., Bridgeman, A., Briechle, F.L., Buchholz, P., Bueno, A., Buitink, S., Buscemi, M., Caballero-Mora, K.S., Caccianiga, L., Cancio, A., Canfora, F., Caramete, L., Caruso, R., Castellina, A., Cataldi, G., Cazon, L., Chavez, A.G., Chinellato, J.A., Chudoba, J., Clay, R.W., Cobos, A., Colalillo, R., Coleman, A., Collica, L., Coluccia, M.R., Conceição, R., Consolati, G., Contreras, F., Cooper, M.J., Coutu, S., Covault, C.E., Cronin, J., D'Amico, S., Daniel, B., Dasso, S., Daumiller, K., Dawson, B.R., de Almeida, R.M., de Jong, S.J., Mauro, G. De, Neto, J.R.T. de Mello, Mitri, I. De, de Oliveira, J., de Souza, V., Debatin, J., Deligny, O., Giulio, C. Di, Matteo, A. Di, Castro, M.L. Díaz, Diogo, F., Dobrigkeit, C., D'Olivo, J.C., Dorosti, Q., Anjos, R.C. dos, Dova, M.T., Dundovic, A.
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Sprache:eng
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Zusammenfassung:An in-situ calibration of a logarithmic periodic dipole antenna with a frequency coverage of 30 MHz to 80 MHz is performed. Such antennas are part of a radio station system used for detection of cosmic ray induced air showers at the Engineering Radio Array of the Pierre Auger Observatory, the so-called Auger Engineering Radio Array (AERA) . The directional and frequency characteristics of the broadband antenna are investigated using a remotely piloted aircraft carrying a small transmitting antenna. The antenna sensitivity is described by the vector effective length relating the measured voltage with the electric-field components perpendicular to the incoming signal direction. The horizontal and meridional components are determined with an overall uncertainty of 7.4+0.9−0.3% and 10.3+2.8−1.7% respectively. The measurement is used to correct a simulated response of the frequency and directional response of the antenna. In addition, the influence of the ground conductivity and permittivity on the antenna response is simulated. Both have a negligible influence given the ground conditions measured at the detector site. The overall uncertainties of the vector effective length components result in an uncertainty of 8.8+2.1−1.3% in the square root of the energy fluence for incoming signal directions with zenith angles smaller than 60°.
ISSN:1748-0221
1748-0221
DOI:10.1088/1748-0221/12/10/T10005