课题基金 / 基金详情

EAGER-New Search Technique for keV Sterile Neutrinos

EAGER-New Search Technique for keV Sterile Neutrinos
EAGER-keV惰性中微子搜索新技术
批准号:
2134505
负责人:
Frank Avignone
金额:
$10.84万
依托单位国家:
美国
项目类别:
Continuing Grant
财政年份:
2021
资助国家:
美国
项目状态:
已结题
起止时间:
2021-07-15 至 2024-06-30

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中文摘要
翻译
暗物质的性质是当今物理学中最重要的问题之一,而大质量的无菌中微子是一个很好的候选者。早期的研究已经对20到300 MeV/c^2之间的质量产生了很好的灵敏度;然而,几keV/c^2到1 MeV/c^2之间的质量范围作为冷暗物质和热暗物质的候选者都很有兴趣。在这个质量范围内已经进行了一些探索,但是分支比的灵敏度仅在10^-3和10^-4之间,而低于200 keV/c^2的质量范围几乎没有探索过。这里计划的实验旨在测试实验技术的有效性,以探索分支比灵敏度为10^-6的整个区域。PI正在与该大学的工程学院合作开发探测器。在Gerholm光谱仪的焦点处的理想检测器几何形状是圆锥形的。可用的锥形探测器是耦合到雪崩光电二极管的塑料放大器。该团队将探索开发具有快速响应的锥形固态探测器。PI的工程同事已经生产出了出色的平面碳化硅(SiC)X射线探测器。他们希望共同开发技术,将活性探测器材料存款在圆锥形亚直线上,以创建具有光谱仪理想几何形状的高分辨率电子探测器。曲面上的粒子探测器还有许多其他潜在的应用,如果这个试点项目能够成功地证明用这种谱仪可以测量具有非常小的β衰变分支的放射源,那么这项技术就可以应用于更大的第二代实验,使分支比达到~10^-8。获得的资金将用于证明一种新开发的β光谱技术的有效性,该技术可以通过最近重新配置的高透射率Gerholm β光谱仪来寻找无菌中微子。该基金还将提供数据采集系统,放射源,机械车间服务和研究生支持,以执行试点search.This奖项反映了NSF的法定使命,并已被认为是值得的支持,通过评估使用基金会的智力价值和更广泛的影响审查标准。
英文摘要
The nature of dark matter is one of the most important questions in physics today, and the massive sterile neutrino is an excellent candidate. Earlier searches have produced excellent sensitivities for masses between 20 and 300 MeV/c^2; however, the mass range between a few keV/c^2 and one MeV/c^2 is of great interest as candidates for both cold and warm dark matter. A few searches have been made in this mass range; however, the branching ratio sensitivities have only been between 10^-3 and 10^-4, while the mass range below 200 keV/c^2 is almost unexplored. The experiment being planned here is designed to test the effectiveness of the experimental technique to explore this entire region with branching ratio sensitivities on the order of 10^-6. The PI is collaborating with the University’s College of Engineering in detector development. The ideal detector geometry at the focus of the Gerholm spectrometer is conical. The available conical detectors are plastic scintillators coupled to avalanche photodiodes. The team will explore the development of a conical solid-state detector with fast response. The PI’s Engineering colleagues have already produced excellent planar silicon carbide (SiC) detectors for x-rays. Together they want to develop techniques to deposit the active detector material on a conical sub-straight to create a high-resolution electron detector with the ideal geometry for the spectrometer. There are many other potential applications for particle detectors deposited on curved surfaces.If this pilot program is successful in demonstrating that radioactive sources with very small beta-decay branches can be measured with this spectrometer, this technique could be applied in a larger second-generation experiment to reach branching ratios of ~10^-8. The funds awarded will be used to demonstrate the efficacy of a newly developed technique in beta spectroscopy to search for sterile neutrinos with a recently reconfigured high-transmission Gerholm beta spectrometer. The funds will also provide for a data acquisition system, radioactive sources, machine shop services and graduate student support to perform a pilot search.This award reflects NSF's statutory mission and has been deemed worthy of support through evaluation using the Foundation's intellectual merit and broader impacts review criteria.
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EAGER: The Development of Axion Software for CUORE
Neutrino-less Double-Beta Decay with CUORE and the MAJORANA DEMONSTRATOR
Participation in the Construction and Operation of the CUORE and Majorana Neutrinoless Double-Beta Decay Experiments
Support of Dark Matter Silver Jubilee Symposium; Syposium to be held in Richland, WA
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