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G. Bellia

Researcher at University of Catania

Publications -  104
Citations -  1305

G. Bellia is an academic researcher from University of Catania. The author has contributed to research in topics: Nucleon & Neutron. The author has an hindex of 18, co-authored 100 publications receiving 1195 citations. Previous affiliations of G. Bellia include Istituto Nazionale di Fisica Nucleare.

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The high-acceptance dielectron spectrometer HADES

G. Agakichiev, +217 more
TL;DR: HADES as discussed by the authors is a versatile magnetic spectrometer aimed at studying dielectron production in pion, proton and heavy-ion-induced collisions, which includes a ring imaging gas Cherenkov detector for electron-hadron discrimination, a tracking system consisting of a set of 6 superconducting coils producing a toroidal field and drift chambers, and a multiplicity and electron trigger array for additional electron hadron discrimination.
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Dielectron production in 12C+12C collisions at 2A GeV with the HADES spectrometer.

G. Agakichiev, +129 more
TL;DR: The invariant mass spectrum of e{sup +}e{sup -} pairs produced in {sup 12C+{sup 12}C collisions at an incident energy of 2 GeV per nucleon has been measured for the first time as mentioned in this paper.
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MEDEA: a multi element detector array for gamma ray and light charged particle detection at the LNS-Catania

TL;DR: In this paper, a 4 π highly granular Mutli Element DEtector Array (MEDEA) for γ-rays and light charged particles is described, which consists of 180 barium fluoride scintillator crystals, arranged in the shape of a ball, plus a forward angle wall of 120 phoswich detectors.
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arXiv : The $^{7}$Be($\boldsymbol{n,p}$)$^{7}$Li reaction and the Cosmological Lithium Problem: measurement of the cross section in a wide energy range at n\_TOF (CERN)

L. A. Damone, +157 more
TL;DR: In this paper, the authors report on the measurement of the cross-section of the lithium ion reaction from thermal to approximately 325 keV neutron energy, performed in the high-flux experimental area (EAR2) of the n\_TOF facility at CERN.