Fermi-LAT has made a significant contribution to the study of high-energy gamma-ray diffuse emission and the observation of ∼3000 discrete sources. However, one third of all gamma-ray sources (both galactic and extragalactic) are unidentified, the data on the diffuse gamma-ray emission should be clarified, and signatures of dark matter particles in the high-energy gamma-ray range are not observed up to now. GAMMA-400, currently developing gamma-ray telescope, will have the angular (∼0.01° at 100 GeV) and energy (∼1% at 100 GeV) resolutions in the energy range of 10-1000 GeV better than the Fermi-LAT (as well as ground gamma-ray telescopes) by a factor of 5-10 and observe some regions of the Universe (such as Galactic Center, Fermi Bubbles, Crab, Cygnus, etc.) in the highly elliptic orbit (without shading the telescope by the Earth) continuously for a long time. It will permit to identify many discrete sources, to clarify the structure of extended sources, to specify the data on the diffuse emission, and to resolve gamma rays from dark matter particles.

Topchiev, N.p., Galper, A.m., Bonvicini, V., Adriani, O., Arkhangelskaja, I.v., Arkhangelskiy, A.i., et al. (2017). High-energy gamma-ray studying with GAMMA-400 after Fermi-LAT. In Journal of Physics: Conference Series (pp.012011). DIRAC HOUSE, TEMPLE BACK, BRISTOL BS1 6BE, ENGLAND : Institute of Physics Publishing [10.1088/1742-6596/798/1/012011].

High-energy gamma-ray studying with GAMMA-400 after Fermi-LAT

Picozza P.;Sparvoli R.;
2017-01-01

Abstract

Fermi-LAT has made a significant contribution to the study of high-energy gamma-ray diffuse emission and the observation of ∼3000 discrete sources. However, one third of all gamma-ray sources (both galactic and extragalactic) are unidentified, the data on the diffuse gamma-ray emission should be clarified, and signatures of dark matter particles in the high-energy gamma-ray range are not observed up to now. GAMMA-400, currently developing gamma-ray telescope, will have the angular (∼0.01° at 100 GeV) and energy (∼1% at 100 GeV) resolutions in the energy range of 10-1000 GeV better than the Fermi-LAT (as well as ground gamma-ray telescopes) by a factor of 5-10 and observe some regions of the Universe (such as Galactic Center, Fermi Bubbles, Crab, Cygnus, etc.) in the highly elliptic orbit (without shading the telescope by the Earth) continuously for a long time. It will permit to identify many discrete sources, to clarify the structure of extended sources, to specify the data on the diffuse emission, and to resolve gamma rays from dark matter particles.
2nd International Conference on Particle Physics and Astrophysics, ICPPA 2016
rus
2016
National Research Nuclear University MEPhI in the framework of the Russian Academic Excellence Project
Rilevanza internazionale
2017
Settore FIS/01 - FISICA SPERIMENTALE
English
Intervento a convegno
Topchiev, N.p., Galper, A.m., Bonvicini, V., Adriani, O., Arkhangelskaja, I.v., Arkhangelskiy, A.i., et al. (2017). High-energy gamma-ray studying with GAMMA-400 after Fermi-LAT. In Journal of Physics: Conference Series (pp.012011). DIRAC HOUSE, TEMPLE BACK, BRISTOL BS1 6BE, ENGLAND : Institute of Physics Publishing [10.1088/1742-6596/798/1/012011].
Topchiev, Np; Galper, Am; Bonvicini, V; Adriani, O; Arkhangelskaja, Iv; Arkhangelskiy, Ai; Bakaldin, Av; Bobkov, Sg; Boezio, M; Dalkarov, Od; Egorov, Ae; Gorbunov, Ms; Gusakov, Yv; Hnatyk, Bi; Kadilin, Vv; Kaplin, Va; Kheymits, Md; Korepanov, Ve; Leonov, Aa; Longo, F; Mikhailov, Vv; Mocchiutti, E; Moiseev, Aa; Moskalenko, Iv; Naumov, Py; Picozza, P; Runtso, Mf; Serdin, Ov; Sparvoli, R; Spillantini, P; Stozhkov, Yi; Suchkov, Si; Taraskin, Aa; Tavani, M; Yurkin, Yt; Zverev, Vg
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2108/250643
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