论文标题

Snowmass'21白皮书 - ISODAR概述

Snowmass'21 Whitepaper -- IsoDAR Overview

论文作者

Alonso, J. R., Conrad, J. M., Kim, Y. D., Seo, S. H., Shaevitz, M. H., Spitz, J., Winklehner, D.

论文摘要

ISODAR@Yemilab是地下中微子物理学的独特设施。该系统包含一个加速器驱动的$ \barν_e$源,位于Yemilab LSC 2.3 KT检测器旁边。由于此设施是首先的,因此为超越标准模型(BSM)物理搜索开辟了新的方法。该计划以其能力以高统计方式以模型不可静止的方式进行新的振荡特征的能力而闻名。 ISODAR@Yemilab可以明确地解决$ \barν_e$消失的问题。除此之外,ISODAR还提供了广泛的搜索新中微子特性和新粒子。该设施使用了最先进的回旋器,该汽车现已经过全面设计并且正在经历原创。在韩国耶米拉布(Yemilab)竞选的初步批准导致了洞穴的完整发掘。尽管加速器旨在在地下运行,但也可以在地面上构建ISODAR加速器,从而使该项目有助于生产挽救生命的医疗同位素的机会。关于ARXIV的文章中有充分的文献记录了Capabilites,技术元素和部署研究,并出现在多个Snowmass'21白皮书中。该白皮书没有重复此文本,而是为这些文档提供了“目录”。

IsoDAR@Yemilab is a unique facility for underground neutrino physics. The system comprises an accelerator-driven $\barν_e$ source located next to the Yemilab LSC 2.3 kt detector. Because this facility is first-of-its-kind, it opens new approaches to Beyond Standard Model (BSM) physics searches. The program is most well-known for its capability to perform searches for new oscillation signatures at high statistics in a model-agnostic manner. IsoDAR@Yemilab can definitively resolve the question of $\barν_e$ disappearance at short baselines. Beyond this, IsoDAR offers a broad range of searches for new neutrino properties and new particles. The facility uses a state-of-the art cyclotron, that is now fully designed and is undergoing protoyping. Preliminary approval to run at Yemilab in South Korea has led to the completed excavation of caverns. While the accelerator is designed to run underground, IsoDAR accelerators can also be constructed on the surface, allowing this project to contribute to the opportunity for production of life-saving medical isotopes. The capabilites, technical elements, and deployment studies are well-documented in articles on arXiv, and appear in multiple Snowmass'21 whitepapers. Rather than repeat this text, this whitepaper provides a "table of contents" to these documents.

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