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The n_TOF facility: Neutron beams for challenging future measurements at CERN

机译:n_TOF设施:中子束,对CERN的未来测量提出挑战

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摘要

The CERN n_TOF neutron beam facility is characterized by a very high instantaneous neutron flux, excellent TOF resolution at the 185?m long flight path (EAR-1), low intrinsic background and coverage of a wide range of neutron energies, from thermal to a few GeV. These characteristics provide a unique possibility to perform high-accuracy measurements of neutron-induced reaction cross-sections and angular distributions of interest for fundamental and applied Nuclear Physics. Since 2001, the n_TOF Collaboration has collected a wealth of high quality nuclear data relevant for nuclear astrophysics, nuclear reactor technology, nuclear medicine, etc. The overall efficiency of the experimental program and the range of possible measurements has been expanded with the construction of a second experimental area (EAR-2), located 20?m on the vertical of the n_TOF spallation target. This upgrade, which benefits from a neutron flux 30 times higher than in EAR-1, provides a substantial extension in measurement capabilities, opening the possibility to collect data on neutron cross-section of isotopes with short half-lives or available in very small amounts. This contribution will outline the main characteristics of the n_TOF facility, with special emphasis on the new experimental area. In particular, we will discuss the innovative features of the EAR-2 neutron beam that make possible to perform very challenging measurements on short-lived radioisotopes or sub-mg samples, out of reach up to now at other neutron facilities around the world. Finally, the future perspectives of the facility will be presented.
机译:CERN n_TOF中子束设施的特点是瞬时中子通量非常高,在185?m长的飞行路径(EAR-1)上具有出色的TOF分辨率,固有背景低,并且涵盖了从热能到原子能的各种中子能量。几个GeV。这些特性为基础和应用核物理进行中子感应反应截面和感兴趣的角分布的高精度测量提供了独特的可能性。自2001年以来,n_TOF协作组织已收集了大量与核天体物理学,核反应堆技术,核医学等相关的高质量核数据。第二个实验区域(EAR-2),位于n_TOF散裂目标垂直方向20?m处。这种升级得益于中子通量比EAR-1高30倍,极大地扩展了测量能力,为收集半衰期短或可用量很小的同位素的中子截面数据提供了可能性。这项贡献将概述n_TOF设施的主要特征,并特别强调新的实验领域。尤其是,我们将讨论EAR-2中子束的创新功能,这些功能使对短寿命放射性同位素或亚mg样品进行非常具有挑战性的测量成为可能,而迄今为止世界上其他中子设施都无法做到。最后,将介绍该设施的未来前景。

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