Radioactive ion beam opportunities at the new FRAISE facility of INFN-LNS

离子束 物理 光束线 核工程 梁(结构) 核物理学 光学 工程类
作者
N. S. Martorana,G. Cardella,C. Guazzoni,E.V. Pagano,A. Russo,P. Russotto,L. Acosta,A. Amato,L. Calabretta,A. Caruso,S. Cavallaro,L. Coséntino,M. Costa,E. De Filippo,G. De Luca,E. Geraci,B. Gnoffo,C. Maiolino,S. Passarello,S. Pirrone
出处
期刊:Frontiers in Physics [Frontiers Media]
卷期号:10 被引量:15
标识
DOI:10.3389/fphy.2022.1058419
摘要

At the Laboratori Nazionali del Sud of INFN (INFN-LNS) in Catania, the construction of the new Radioactive Ion Beams (RIBs) facility FRAISE (FRAgment In-flight SEparator) has reached its ending phase. The facility uses the in-flight technique based on a primary beam fragmentation impinging on light Be or C targets. FRAISE makes use of light and medium mass primary beams, having power up to ≈ 2–3 kW, leading to RIBs, whose intensities vary in the range of ≈ 10 3 –10 7 pps, for nuclei far from and close to the stability valley, respectively. FRAISE aims at providing high-intensity and high-quality RIBs for nuclear physics experiments, also serving to interdisciplinary research areas, such as medical physics. Critical aspects for high-quality beams are the tuning and transport, representing time-consuming processes and requiring dedicated diagnostics and tagging devices measuring many features of RIBs. Some of these devices should be capable to operate in radioactively activated environments because of the expected 2 kW beam lost in the dipole after the production target. Due to its peculiar robustness to radioactive damage, Silicon Carbide (SiC) technology has been considered for the detection layer. In this view, an R&D campaign has been started aiming at developing the FRAISE facility, the new diagnostics system, and a new tagging device, the latter of which will be useful for the CHIMERA multidetector beamline. In this paper, we discuss the status and the perspectives of the facility with a focus on the RIBs opportunities.
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