GAMMA-LIGHT: High-Energy Astrophysics above 10 MeV
Aldo Morselli, Andrea Argan, Guido Barbiellini, Walter Bonvicini,, Andrea Bulgarelli, Martina Cardillo, Andrew Chen, Paolo Coppi, Anna Maria Di, Giorgio, Immacolata Donnarumma, Ettore Del Monte, Valentina Fioretti,, Marcello Galli, Manuela Giusti, Attilio Ferrari, Fabio Fuschino

TL;DR
GAMMA-LIGHT is a proposed small satellite mission designed to significantly advance our understanding of high-energy astrophysical phenomena above 10 MeV by providing unprecedented angular resolution and sensitivity in the 10-50 MeV range.
Contribution
It introduces innovative Silicon-based technology and data acquisition methods to improve gamma-ray detection and resolution over existing instruments like AGILE and Fermi.
Findings
Enhanced angular resolution in 100 MeV - 1 GeV range
Improved point source sensitivity
New observational window in 10-50 MeV gamma-ray band
Abstract
High-energy phenomena in the cosmos, and in particular processes leading to the emission of gamma- rays in the energy range 10 MeV - 100 GeV, play a very special role in the understanding of our Universe. This energy range is indeed associated with non-thermal phenomena and challenging particle acceleration processes. The technology involved in detecting gamma-rays is challenging and drives our ability to develop improved instruments for a large variety of applications. GAMMA-LIGHT is a Small Mission which aims at an unprecedented advance of our knowledge in many sectors of astrophysical and Earth studies research. The Mission will open a new observational window in the low-energy gamma-ray range 10-50 MeV, and is configured to make substantial advances compared with the previous and current gamma-ray experiments (AGILE and Fermi). The improvement is based on an exquisite angular…
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