Timing analysis techniques at large core distances for multi-TeV gamma ray astronomy
arXiv:1105.0282 · doi:10.1016/j.astropartphys.2011.03.008
Abstract
We present an analysis technique that uses the timing information of Cherenkov images from extensive air showers (EAS). Our emphasis is on distant, or large core distance gamma-ray induced showers at multi-TeV energies. Specifically, combining pixel timing information with an improved direction reconstruction algorithm, leads to improvements in angular and core resolution as large as ~40% and ~30%, respectively, when compared with the same algorithm without the use of timing. Above 10 TeV, this results in an angular resolution approaching 0.05 degrees, together with a core resolution better than ~15 m. The off-axis post-cut gamma-ray acceptance is energy dependent and its full width at half maximum ranges from 4 degrees to 8 degrees. For shower directions that are up to ~6 degrees off-axis, the angular resolution achieved by using timing information is comparable, around 100 TeV, to the on-axis angular resolution. The telescope specifications and layout we describe here are geared towards energies above 10 TeV. However, the methods can in principle be applied to other energies, given suitable telescope parameters. The 5-telescope cell investigated in this study could initially pave the way for a larger array of sparsely spaced telescopes in an effort to push the collection area to >10 km2. These results highlight the potential of a `sparse array' approach in effectively opening up the energy range above 10 TeV.
Published in Astroparticle Physics
References in corpus (12)
- Observations of the Crab Nebula with H.E.S.S
- The H.E.S.S. survey of the Inner Galaxy in very high-energy gamma-rays
- Primary particle acceleration above 100 TeV in the shell-type Supernova Remnant RX J1713.7-3946 with deep H.E.S.S. observations
- A high performance likelihood reconstruction of gamma-rays for Imaging Atmospheric Cherenkov Telescopes
- A new population of very high energy gamma-ray sources in the Milky Way
- Simulation of Imaging Atmospheric Cherenkov Telescopes with CORSIKA and sim_telarray
- Improving the performance of the single-dish Cherenkov telescope MAGIC through the use of signal timing
- Selection and 3D-Reconstruction of Gamma-Ray-induced Air Showers with a Stereoscopic System of Atmospheric Cherenkov Telescopes
- Wide-field prime-focus Imaging Atmospheric Cherenkov Telescopes: A systematic study
- Extending the Sensitivity of Air Cerenkov Telescopes
- Optimization of large homogeneous air Cherenkov arrays and application to the design of a 1TeV-100TeV gamma-ray observatory
- Next generation of IACT arrays: scientific objectives versus energy domains
Cited by in corpus (7)
- Monte Carlo design studies for the Cherenkov Telescope Array
- A NECTAr-based upgrade for the Cherenkov cameras of the H.E.S.S. 12-meter telescopes
- Extracting gamma-ray information from images with convolutional neural network methods on simulated Cherenkov Telescope Array data
- Event reconstruction techniques for the wide-angle air Cherenkov detector HiSCORE
- Design constraints on Cherenkov telescopes with Davies-Cotton reflectors
- Performance of a Small Array of Imaging Air Cherenkov Telescopes sited in Australia
- Optimising an Array of Cherenkov Telescopes in Australia for the Detection of TeV Gamma-Ray Transients