Issues and R&D Required for the Intensity Frontier Accelerators

Issues and R&D Required for the Intensity Frontier Accelerators
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问题与研究

DOI:
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发表时间:
2013
期刊:
影响因子:
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通讯作者:
V. Lebedev
V. Lebedev
中科院分区:
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文献类型:
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作者:
V. Shiltsev;S. Henderson;P. Hurh;I. Kourbanis;V. Lebedev

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为了满足近期和长期的粒子物理计划,强度前沿加速器的运行、升级和开发面临着巨大的挑战。在这里我们讨论关键问题和RD b) 主注入器的束流功率能力加倍; c) 建立基于 8 GeV 质子源的 μ 子园区基础设施和能力。强度前沿社区的长期需求预计将基于以下实验:a)长基线中微子实验,以解开中微子扇区、CP破坏等; b) 对μ介子、介子、中子进行稀有且精确的测量,以探测大型强子对撞机之外的质量尺度。两种类型的实验都需要兆瓦级光束。 Project-X 建设有望解决这些挑战 [1]。 Project X 代表了一种现代、灵活的多兆瓦质子加速器(见图 1)。
Operation, upgrade and development of accelerators for Intensity Frontier face formidable challenges in order to satisfy both the near-term and long-term Particle Physics program. Here we discuss key issues and RD b) double the beam power capabil ity of the Main Injector; and c) build -out the muon campus infrastructure and capability based on the 8 GeV proton source. The long-term needs of the Intensity Frontier community are expected to be based on the following experiments: a) long-baseline neutrino experiments to unravel neutrino sector, CP-violation, etc.; and b) rare and precision measurements of muons, kaons, neutrons to probe massscales beyond LHC. Both types of experiments will require MW-class beams. The Project-X construction is expected to address these challenges [1]. The Project X represents a modern, flexible, Multi-MW proton accelerator (see Fig.1).