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Cosmic Ray Composition in the Second Knee Region as Measured by the TALE Hybrid Detector
doi: 10.22323/1.395.0353
handle: 20.500.12556/RUNG-8489
The Telescope Array Low-energy Extension (TALE) experiment is a hybrid air shower detector for the observation of air showers induced by cosmic rays with energy above 10^16 eV. The TALE detector consists of a Fluorescence Detector (FD) station with 10 FD telescopes located at the TA Middle Drum FD Station (itself made up of 14 FD telescopes), and a Surface Detector (SD) array made up of 80 scintillation counters, including 40 with 400 m spacing and 40 with 600 m spacing. A triggering system for the TALE-SD using an external trigger from the TALE-FD, a so-called hybrid trigger, allows for a lower energy threshold. The TALE hybrid trigger system has been working since 2018. Here we present an estimate of the performance of hybrid detection using a Monte Carlo simulation, and a first measurement of the cosmic ray composition and spectrum using the TALE-Hybrid detector.
- University of Utah United States
- Shibaura Institute of Technology Japan
- Yonsei University Korea (Republic of)
- Sungkyul University Korea (Republic of)
- Hanyang University Korea (Republic of)
Telescope Array, ground array, cosmic rays, composition, low energy extension, fluorescence detection, TALE, energy spectrum, ultra-high energy, indirect detection, hybrid detection, cerenkov light
Telescope Array, ground array, cosmic rays, composition, low energy extension, fluorescence detection, TALE, energy spectrum, ultra-high energy, indirect detection, hybrid detection, cerenkov light
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