UCLA CUORE Neutrino Physics Research Program
UCLA CUORE Neutrino Physics Research Program
批准号:
0969312
负责人:
Huan Huang
金额:
$45.0万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2010
资助国家:
美国
项目状态:
已结题
起止时间:
2010-07-01 至 2014-12-31
中文摘要
这个奖项的科学目标是解决中微子物理学中的一个基本问题:中微子是自己的反粒子,因此马约拉纳中微子?这个问题的答案将从根本上塑造中微子物理学的未来方向,即中微子质量尺度和轻子扇区中可能的CP破坏。无中微子双β衰变实验可以产生广泛的科学影响:它们对电子中微子质量的绝对尺度敏感,并揭示了标准模型扩展的性质;此外,中微子,如果它们是马约拉纳和CP破坏,可能提供一个可行的物理过程,有助于宇宙的物质和反物质不对称性。加州大学洛杉矶分校小组是意大利阿塞尔吉的格兰萨索地下实验室的CUORE无中微子双β衰变实验的成员。研究工作将侧重于了解背景源和探测器能量分辨率。他们将参与建立CUORE TeO 2晶体塔,并将参与CUORE背景和数据分析的Monte Carlo模拟。此外,加州大学洛杉矶分校集团负责与南卡罗来纳州大学和米兰集团合作,测试、安装和调试CUORE电子系统,作为CUORE建设项目的一部分。电子学性能将是一个关键方面,有助于整体探测器的能力,以推进我们的中微子性质的实验测定。如果使用最新的核结构计算,则对有效中微子质量的相应灵敏度范围为50-70 meV。在更广泛的影响中:这是意大利和美国科学家之间的国际合作;测辐射热计和电子技术将有应用,如物理或国土安全或应用科学的核辐射测量;中微子物理学和新技术对本科生来说特别令人兴奋。
英文摘要
The scientific goal of this award is to address one of the fundamental questions in neutrino physics: Are neutrinos their own anti-particles, and therefore Majorana neutrinos? The answer to this question will fundamentally shape the future direction of neutrino physics regarding the neutrino mass scale and possible CP violations in the lepton sector. Neutrino-less double beta decay experiments can have broad scientific impact: they are sensitive to the absolute scale of the electron neutrino mass and shed light on the nature of the extension to the Standard Model; furthermore, neutrinos, if they are Majorana and with CP violation, may provide a viable physical process contributing to the matter and anti-matter asymmetry of the Universe. The UCLA group is a member of the CUORE neutrino-less double beta decay experiment at the Gran Sasso underground laboratory in Assergi, Italy. The research effort will focus on understanding background sources and detector energy resolutions. They will participate in setting up a tower of CUORE TeO2 crystals and will be involved in the Monte Carlo simulations of the CUORE background and data analysis. In addition, the UCLA group is responsible for testing, installation and commissioning of the CUORE electronics system in collaboration with the University of South Carolina and Milan groups as a part of the CUORE construction project. The electronics performance will be a key aspect contributing to the overall detector capability to advance our experimental determination of the neutrino properties. The corresponding sensitivity to the effective neutrino mass ranges from 50-70 meV, if latest nuclear structure calculations are used.Among the Broader Impacts: it is an international collaboration between Italy and US scientists; the bolometer and electronics technology will have applications such as nuclear radiation measurements for physics or homeland security or applied sciences; and neutrino physics and the new technology are particularly exciting for undergraduate students.
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Conference Proposal for Strange Quark Matter 2016 at Berkeley, California
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批准号:1614003
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项目类别:Standard Grant
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资助金额:$0.5万
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财政年份:2016
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负责人:Huan Huang
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依托单位:
UCLA CUORE Neutrino Physics Research Program
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批准号:1401832
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项目类别:Continuing Grant
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资助金额:$49.95万
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财政年份:2014
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负责人:Huan Huang
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依托单位:
UCLA CUORE Neutrino Physics Research Program
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批准号:1306199
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项目类别:Standard Grant
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资助金额:$12.0万
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财政年份:2013
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负责人:Huan Huang
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依托单位:
海外基金