LOPES — Recent Results and Open Questions on the Radio Detection of Air Showers

LOPES was a digital antenna array operating for approximately 10 years until spring 2013 at the Karlsruhe Institute of Technology (KIT). Triggered by the co-located KASCADE-Grande air-shower experiment, it measured the radio signal of around 1000 cosmic-ray air showers with energies E ≳ 1017 eV in an effective band of 43 – 74 MHz. Using the interferometric technique of cross-correlation beamforming, LOPES could reconstruct the shower direction with an accuracy < 0.7°, the shower energy with a precision < 20%, and the atmospheric depth of the shower maximum, Xmax, with a precision < 95g/cm2. In particular the reconstruction of the shower maximum suffers from significant measurement uncertainties due to the radio-loud environment of the site. This article summarizes our latest results on the reconstruction of the shower maximum, using two independent methods: the steepness of the hyperbolic radio wavefront and the slope of the lateral distribution of the radio amplitude. Moreover, we show vectorial measurements of the electric field with the tripole antennas of the latest LOPES setup. Finally, we discuss open questions as well as the potential impact of the lessons learned at LOPES for future antenna arrays.

[1]  P. G. Isar,et al.  Reconstruction of the energy and depth of maximum of cosmic-ray air showers from LOPES radio measurements , 2014, 1408.2346.

[2]  P. Schellart,et al.  Polarized radio emission from extensive air showers measured with LOFAR , 2014, 1406.1355.

[3]  P. G. Isar,et al.  The wavefront of the radio signal emitted by cosmic ray air showers , 2014, 1404.3283.

[4]  N. T. Thao,et al.  Probing the radio emission from air showers with polarization measurements , 2014 .

[5]  J. C. Arteaga,et al.  Comparing LOPES measurements of air-shower radio emission with REAS 3.11 and CoREAS simulations , 2013, 1309.5920.

[6]  P. G. Isar,et al.  Radio Measurements of Air Showers with LOPES , 2013 .

[7]  J. C. Arteaga,et al.  LOPES-3D: An antenna array for full signal detection of air-shower radio emission , 2012, 1303.6808.

[8]  N. T. Thao,et al.  Antennas for the detection of radio emission pulses from cosmic-ray induced air showers at the Pierre Auger Observatory , 2012, 1209.3840.

[9]  B. Revenu,et al.  Simulation of radio emission from cosmic ray air shower with SELFAS2 , 2012, 1203.5248.

[10]  J. C. Arteaga,et al.  Experimental evidence for the sensitivity of the air-shower radio signal to the longitudinal shower development , 2012, 1203.3971.

[11]  K. D. Vries,et al.  A realistic treatment of geomagnetic Cherenkov radiation from cosmic ray air showers , 2012, 1201.4471.

[12]  W. Carvalho,et al.  Monte Carlo simulations of radio pulses in atmospheric showers using ZHAireS , 2011, 1107.1189.

[13]  T. Huege,et al.  REAS3: Monte Carlo simulations of radio emission from cosmic ray air showers using an 'end-point' formalism , 2010, 1010.5343.

[14]  R. Field,et al.  Observation of ultrahigh-energy cosmic rays with the ANITA balloon-borne radio interferometer. , 2010, Physical review letters.

[15]  P. G. Isar,et al.  New method for the time calibration of an interferometric radio antenna array , 2010, 1002.3775.

[16]  R. Ekers,et al.  LUNASKA experiments using the Australia Telescope Compact Array to search for ultrahigh energy neutrinos and develop technology for the lunar Cherenkov technique , 2009, 0911.3009.

[17]  P. G. Isar,et al.  Radio emission of energetic cosmic ray air showers: Polarization measurements with LOPES , 2009 .

[18]  E. al.,et al.  Direction identification in radio images of cosmic-ray air showers detected with LOPES and KASCADE , 2008, 0809.2742.

[19]  P. G. Isar,et al.  Amplitude calibration of a digital radio antenna array for measuring cosmic ray air showers , 2008, 0802.4151.

[20]  J. C. Arteaga,et al.  The KASCADE-grande experiment , 2007 .

[21]  S. Buitink,et al.  Detection and imaging of atmospheric radio flashes from cosmic ray air showers , 2005, Nature.

[22]  H. J. Gils,et al.  The cosmic-ray experiment KASCADE , 2003 .