The present design of the new space gamma-ray telescope GAMMA-400 for the energy range 50 MeV - 3 TeV is presented. The proposed instrument has an angular resolution of 1-2 degrees at E(γ) ∼100 MeV and ∼0.01 degrees at E(γ) > 100 GeV and an energy resolution ∼1% at E(γ) > 100 GeV. By means of a deep segmented calorimeter high energy electron flux can be studied, with a proton rejection factor of about 106. The GAMMA-400 experiment is optimized to address a broad range of science topics, such as search for signatures of dark matter, studies of galactic and extragalactic gamma-ray sources, galactic and extragalactic diffuse emission, gamma-ray bursts, as well as highprecision measurements of spectra of high energy electrons, protons and nuclei up to the knee. © 2013 Elsevier B.V.
E., M., A. M., G., O., A., R. L., A., I. V., A., A. I., A., et al. (2013). The GAMMA-400 Space Experiment: Gammas, Electrons and Nuclei Measurements. NUCLEAR PHYSICS B-PROCEEDINGS SUPPLEMENTS, 239-240, 204-209 [10.1016/j.nuclphysbps.2013.05.047].
The GAMMA-400 Space Experiment: Gammas, Electrons and Nuclei Measurements
MAESTRO, PAOLO;MARROCCHESI, PIER SIMONE;
2013-01-01
Abstract
The present design of the new space gamma-ray telescope GAMMA-400 for the energy range 50 MeV - 3 TeV is presented. The proposed instrument has an angular resolution of 1-2 degrees at E(γ) ∼100 MeV and ∼0.01 degrees at E(γ) > 100 GeV and an energy resolution ∼1% at E(γ) > 100 GeV. By means of a deep segmented calorimeter high energy electron flux can be studied, with a proton rejection factor of about 106. The GAMMA-400 experiment is optimized to address a broad range of science topics, such as search for signatures of dark matter, studies of galactic and extragalactic gamma-ray sources, galactic and extragalactic diffuse emission, gamma-ray bursts, as well as highprecision measurements of spectra of high energy electrons, protons and nuclei up to the knee. © 2013 Elsevier B.V.File | Dimensione | Formato | |
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https://hdl.handle.net/11365/45097
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