LOPES, the LOFAR prototype station, was an antenna array for cosmic-ray air showers operating from 2003 to 2013 within the KASCADE-Grande experiment. Meanwhile, the analysis is finished and the data of air-shower events measured by LOPES are available with open access in the KASCADE Cosmic Ray Data Center (KCDC). This article intends to provide a summary of the achievements, results, and lessons learned from LOPES. By digital, interferometric beamforming the detection of air showers became possible in the radio-loud environment of the Karlsruhe Institute of Technology (KIT). As a prototype experiment, LOPES tested several antenna types, array configurations and calibration techniques, and pioneered analysis methods for the reconstruction of...
First analyses of coincident data of the LOPES (LOfar PrototypE Station) radio antennas with the par...
First analyses of coincident data of the LOPES (LOfar PrototypE Station) radio antennas with the par...
The LOw Frequency ARray (LOFAR) is a multipurpose radio antenna array aimed to detect radio signals ...
Measuring radio pulses from cosmic ray air showers offers various new opportunities. New digital rad...
Radio pulses emitted in the atmosphere during the air shower development of high-energy primary cosm...
Abstract. LOPES is an array of 30 radio antenna co-located with the KASCADE-Grande extensive air sho...
Cosmic ray air showers are high energetic particles coming from the Universe toward the\ud Earth eve...
Contains fulltext : 35479.pdf ( ) (Open Access)Data taken during half a year of op...
The LOPES experiment measured the radio emission from cosmic ray induced air showers. Within this wo...
LOPES - LOFAR PrototypE Station (LOFAR - LOw Frequency ARray) is an array of dipole antennas used fo...
Contains fulltext : 36135.pdf (publisher's version ) (Closed access)The LOPES expe...
In the last few years, radio detection of cosmic ray air showers has experienced a true renaissance,...
The LOw Frequency ARay (LOFAR) is a multi-purpose radio antenna array aimed to detect radio signals ...
Data taken with a radio antenna array in combination with the ground-level air shower experiment KAS...
LOPES is a digital radio interferometer located at Karlsruhe Institute of Technology (KIT), Germany,...
First analyses of coincident data of the LOPES (LOfar PrototypE Station) radio antennas with the par...
First analyses of coincident data of the LOPES (LOfar PrototypE Station) radio antennas with the par...
The LOw Frequency ARray (LOFAR) is a multipurpose radio antenna array aimed to detect radio signals ...
Measuring radio pulses from cosmic ray air showers offers various new opportunities. New digital rad...
Radio pulses emitted in the atmosphere during the air shower development of high-energy primary cosm...
Abstract. LOPES is an array of 30 radio antenna co-located with the KASCADE-Grande extensive air sho...
Cosmic ray air showers are high energetic particles coming from the Universe toward the\ud Earth eve...
Contains fulltext : 35479.pdf ( ) (Open Access)Data taken during half a year of op...
The LOPES experiment measured the radio emission from cosmic ray induced air showers. Within this wo...
LOPES - LOFAR PrototypE Station (LOFAR - LOw Frequency ARray) is an array of dipole antennas used fo...
Contains fulltext : 36135.pdf (publisher's version ) (Closed access)The LOPES expe...
In the last few years, radio detection of cosmic ray air showers has experienced a true renaissance,...
The LOw Frequency ARay (LOFAR) is a multi-purpose radio antenna array aimed to detect radio signals ...
Data taken with a radio antenna array in combination with the ground-level air shower experiment KAS...
LOPES is a digital radio interferometer located at Karlsruhe Institute of Technology (KIT), Germany,...
First analyses of coincident data of the LOPES (LOfar PrototypE Station) radio antennas with the par...
First analyses of coincident data of the LOPES (LOfar PrototypE Station) radio antennas with the par...
The LOw Frequency ARray (LOFAR) is a multipurpose radio antenna array aimed to detect radio signals ...