论文标题

反应堆抗肿瘤的高能量物理机会

High Energy Physics Opportunities Using Reactor Antineutrinos

论文作者

Akindele, O. A., Berryman, J. M., Bowden, N. S., Carr, R., Conant, A. J., Huber, P., Langford, T. J., Link, J. M., Littlejohn, B. R., Fernandez-Moroni, G., Ochoa-Ricoux, J. P., Roca, C., Schoppmann, S., Strigari, L., Xu, J., Zhang, C., Zhang, X.

论文摘要

核反应堆具有独特的强大,丰富和风味的抗管源来源,在美国中微子物理学计划中继续起着至关重要的作用。美国反应堆抗神经物理界是一个多样的兴趣组,包括许多检测技术和许多粒子物理主题,包括标准模型和短基线振荡,BSM物理搜索以及反应器通量和光谱建模。该社区的目标提供了更广泛的美国中微子计划的许多方面,并与构成雪人2021 Neutrino边境的大多数主题子组具有直接相关性。反应堆中微子实验也具有直接的社会影响,并已成为美国能源部国家实验室和大学的强大劳动力和技术发展渠道。这份白皮书作为雪人2021社区组织练习的提交准备,将调查反应堆抗神经抗体物理领域的状态,并总结当前和未来的反应堆抗神经抗体实验在未来十年中促进粒子物理学领域的关键作用。

Nuclear reactors are uniquely powerful, abundant, and flavor-pure sources of antineutrinos that continue to play a vital role in the US neutrino physics program. The US reactor antineutrino physics community is a diverse interest group encompassing many detection technologies and many particle physics topics, including Standard Model and short-baseline oscillations, BSM physics searches, and reactor flux and spectrum modeling. The community's aims offer strong complimentary with numerous aspects of the wider US neutrino program and have direct relevance to most of the topical sub-groups composing the Snowmass 2021 Neutrino Frontier. Reactor neutrino experiments also have a direct societal impact and have become a strong workforce and technology development pipeline for DOE National Laboratories and universities. This white paper, prepared as a submission to the Snowmass 2021 community organizing exercise, will survey the state of the reactor antineutrino physics field and summarize the ways in which current and future reactor antineutrino experiments can play a critical role in advancing the field of particle physics in the next decade.

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