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Monte Carlo design studies for the Cherenkov Telescope Array
- Source :
- Astroparticle Physics, Astroparticle Physics, Elsevier, 2013, 43, pp.171-188. ⟨10.1016/j.astropartphys.2012.10.002⟩, Astroparticle Physics, 2013, 43, pp.171-188. ⟨10.1016/j.astropartphys.2012.10.002⟩, Astroparticle physics 43, 171 (2012). doi:10.1016/j.astropartphys.2012.10.002, CONICET Digital (CONICET), Consejo Nacional de Investigaciones Científicas y Técnicas, instacron:CONICET
- Publication Year :
- 2013
- Publisher :
- HAL CCSD, 2013.
-
Abstract
- The Cherenkov Telescopes Array (CTA) is planned as the future instrument for very-high-energy (VHE) gamma-ray astronomy with a wide energy range of four orders of magnitude and an improvement in sensitivity compared to current instruments of about an order of magnitude. Monte Carlo simulations are a crucial tool in the design of CTA. The ultimate goal of these simulations is to find the most cost-effective solution for given physics goals and thus sensitivity goals or to find, for a given cost, the solution best suited for different types of targets with CTA. Apart from uncertain component cost estimates, the main problem in this procedure is the dependence on a huge number of configuration parameters, both in specifications of individual telescope types and in the array layout. This is addressed by simulation of a huge array intended as a superset of many different realistic array layouts, and also by simulation of array subsets for different telescope parameters. Different analysis methods -- in use with current installations and extended (or developed specifically) for CTA -- are applied to the simulated data sets for deriving the expected sensitivity of CTA. In this paper we describe the current status of this iterative approach to optimize the CTA design and layout.<br />Comment: 61 pages, 20 figures, accepted for publication in Astroparticle Physics
- Subjects :
- [PHYS.ASTR.HE]Physics [physics]/Astrophysics [astro-ph]/High Energy Astrophysical Phenomena [astro-ph.HE]
Gamma rays, Cosmic rays
Ciencias Físicas
Astrophysics::High Energy Astrophysical Phenomena
Monte Carlo method
FOS: Physical sciences
Monte Carlo simulation
Cherenkov telescopes
IACT technique
Subset and superset
01 natural sciences
law.invention
Monte Carlo simulations
purl.org/becyt/ford/1 [https]
Telescope
Theoretical physics
law
0103 physical sciences
Sensitivity (control systems)
010303 astronomy & astrophysics
Instrumentation
Cosmic rays
Instrumentation and Methods for Astrophysics (astro-ph.IM)
Cherenkov radiation
Physics
High Energy Astrophysical Phenomena (astro-ph.HE)
010308 nuclear & particles physics
[SDU.ASTR.HE]Sciences of the Universe [physics]/Astrophysics [astro-ph]/High Energy Astrophysical Phenomena [astro-ph.HE]
Gamma rays
Astrophysics::Instrumentation and Methods for Astrophysics
Astronomy and Astrophysics
purl.org/becyt/ford/1.3 [https]
Cherenkov Telescope Array
Astronomía
Cherenkov telescope
Computer engineering
Orders of magnitude (time)
ddc:540
Astrophysics - Instrumentation and Methods for Astrophysics
Astrophysics - High Energy Astrophysical Phenomena
Gamma-rays
High energy astrophysics
Energy (signal processing)
CIENCIAS NATURALES Y EXACTAS
Subjects
Details
- Language :
- English
- ISSN :
- 09276505
- Database :
- OpenAIRE
- Journal :
- Astroparticle Physics, Astroparticle Physics, Elsevier, 2013, 43, pp.171-188. ⟨10.1016/j.astropartphys.2012.10.002⟩, Astroparticle Physics, 2013, 43, pp.171-188. ⟨10.1016/j.astropartphys.2012.10.002⟩, Astroparticle physics 43, 171 (2012). doi:10.1016/j.astropartphys.2012.10.002, CONICET Digital (CONICET), Consejo Nacional de Investigaciones Científicas y Técnicas, instacron:CONICET
- Accession number :
- edsair.doi.dedup.....d05fee054a9d714c00b010875aee7008
- Full Text :
- https://doi.org/10.1016/j.astropartphys.2012.10.002⟩