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RUI: A Program of Undergraduate Participation in CUORE and the Search for Neutrinoless Double Beta Decay

RUI: A Program of Undergraduate Participation in CUORE and the Search for Neutrinoless Double Beta Decay
RUI:本科生参与 CUORE 和寻找中微子双贝塔衰变的计划
批准号:
1404205
负责人:
Thomas Gutierrez
金额:
$18.63万
依托单位国家:
美国
项目类别:
Continuing Grant
财政年份:
2014
资助国家:
美国
项目状态:
已结题
起止时间:
2014-09-15 至 2019-08-31

项目摘要

项目成果

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中文摘要
翻译
中微子是宇宙中最丰富的粒子之一,但我们不知道它们的许多性质。例如,我们不知道它们的绝对质量尺度,也不知道它们的粒子-反粒子性质。由于它们的丰富,即使是一个很小的质量也可能对理解它们在我们宇宙演化中的作用产生深远的影响。了解中微子是否是它们自己的反粒子,可能会对理解我们宇宙的物质-反物质不对称性产生影响。无中微子双贝塔衰变(NLDBD)实验解决了这两个基本问题。双贝塔衰变是一种罕见的核衰变,在能量有利的情况下,已经在几个原子核中测量到了这种衰变。一些原子核对普通的贝塔衰变是稳定的,但对于双贝塔衰变是不稳定的,在双重贝塔衰变中,原子核中的两个中子同时转化为质子,并发射两个电子。双贝塔衰变可以通过几种模式进行。实验测量的过程,即两个中微子模式,其中两个电子反中微子也被发射,完全由已知的物理描述。NLDBD是一种尚未被检测到的衰变,它在最终状态中没有中微子,必然会表明中微子是它们自己的反粒子。这种衰变的速度决定了有效中微子质量的大小。CUORE(稀有事件低温地下观测站)是一项在同位素130-Te中寻找NLDBD的实验,目前正在意大利阿瑟吉的Gran Sasso国家实验室建设。Cuore是一组TeO2晶体,用作低温测辐射热计,用于粒子探测。晶体既是热源材料,又是吸收量热材料。这些类型的探测器提供了良好的能量分辨率和效率,非常适合NLDBD搜索。这一奖项将使PI能够继续为本科生提供参与CUORE实验的机会。这将涉及监测热敏电阻和加热器在988晶体上的粘合、帮助组装校准系统和电子元件、协助低温恒温器校准、测试探测器的各个子系统以及低温恒温器冷却或预热诊断等任务。这将为学生提供在世界级地下实验室进行尖端物理实验的宝贵经验。Cal Poly将追求的一个令人兴奋的公共宣传部门是为CUORE物理开发一个交互式可视化方案。该软件将作为公众洞察科学过程和探索粒子物理奥秘的渠道。通过加州大学保利的科学和数学教育卓越中心,他们将帮助当地教师为高中物理课程开发基于项目的学习模块,其中纳入了CUORE的基本物理知识。
英文摘要
Neutrinos are amongst the most abundant particles in the Universe and yet we do not know many of their properties. For example, we do not know their absolute mass scale or their particle-antiparticle nature. Because of their abundance, even a small mass could have far-reaching consequences for understanding their role in the evolution of our Universe. Knowing if neutrinos are their own antiparticles could have implications in understanding the matter-antimatter asymmetry of our Universe. Neutrino-less double beta decay (NLDBD) experiments address these two fundamental questions. Double beta decay is a rare nuclear decay that has been measured in several nuclei when it is energetically favorable. Some nuclei are stable against ordinary beta decay but are unstable for double beta decay in which two neutrons in the nucleus are simultaneously converted to protons and two electrons are emitted. Double beta decay can proceed through several modes. The experimentally measured process, the two-neutrino mode in which two electron antineutrinos are also emitted, is completely described by known physics. NLDBD is an as-yet-undetected decay that involves no neutrinos in the final state and necessarily would indicate that neutrinos are their own antiparticle. The rate of such decays determines the scale for the effective neutrino mass. CUORE (Cryogenic Underground Observatory for Rare Events) is an experiment to search for NLDBD in the isotope 130-Te and is currently being built at the Gran Sasso National Laboratory in Assergi, Italy. CUORE is an array of TeO2 crystals used as cryogenic bolometers for the purpose of particle detection. The crystals act as both the source and the absorbing calorimetric material. These kinds of detectors offer good energy resolution and efficiencies and are well-suited for NLDBD searches. This award will enable the PI to continue to provide opportunities for undergraduate students to participate on the CUORE experiment. This will involve tasks such as monitoring the gluing of thermistors and heaters on the 988 crystals, helping to assemble the calibration system and elements of the electronics and assisting with cryostat alignment, with tests of the various subsystems of the detector and with cryostat cool down or warm up diagnostics. This will give students invaluable experience working with a cutting-edge physics experiment in a world-class underground laboratory. An exciting sector of public outreach that Cal Poly will pursue is to develop an interactive visualization scheme for CUORE physics. This software will serve as a channel for the public to gain insight into the scientific process and explore the mysteries of particle physics. Through Cal Poly's Center for Excellence in Science and Mathematics Education they will help local teachers develop project-based-learning modules for high school physics courses that incorporate the underlying physics of CUORE.
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会议论文
RUI: A Program of Undergraduate Participation in the Search for Rare Events with CUORE
RUI: Analysis, Simulation, and Onsite Activities Contributing to the Search for Neutrinoless Double Beta Decay in Tellurium Using the CUORE Detector
RUI: A Search for Neutrinoless Double Beta Decay in Tellurium Using the Cuoricino Detector
海外基金