论文标题

使用低温探​​测器的中微子质量测量

Neutrino mass measurements using cryogenic detectors

论文作者

Gastaldo, Loredana

论文摘要

确定中微子的绝对质量尺度是粒子物理学中最重要的挑战之一。 $β$ -DECAY和电子捕获(EC)光谱的端点区域的形状取决于相位空间因子,这反过来又是中微子质量特征状态的功能。因此,高能量分辨率和高统计量的测量值为$β$ - 和EC光谱被认为是确定中微子质量量表的模型独立的方式。由于将近四十年以来,低温微量钙化器用于测量低能$β$和EC光谱。首先努力的重点是开发大型阵列,以测量$^{187} $ re $β$ -spectrum。在过去的十年中,注意力转移到$^{163} $ HO的EC。这种选择主要是由非常出色的性能激发的,而低温微量钙化器可以将$^{163} $ HO封闭相对于带有$^{187} $ RE的吸收器的微量钙化器。讨论了从$^{187} $ re re to $^{163} $ ho的原因,讨论了有限性中微子质量测量的低温微钙化器的开发。得益于大型微升力计阵列的多路复用,具有$^{163} $ ho的有效电子中微子质量的sub-eV敏感性的可能性。总之,提出了针对低温微量钙化器表现出色的良好候选者的其他核素的概述。

The determination of the absolute mass scale of neutrinos is one of the most important challenges in Particle Physics. The shape of the endpoint region of $β$-decay and electron capture (EC) spectra depends on the phase space factor, which, in turn, is function of the neutrino mass eigenstates. High energy resolution and high statistics measurements of $β$- and EC spectra are therefore considered a model-independent way for the determination of the neutrino mass scale. Since almost four decades, low temperature microcalorimeters are used for the measurement of low energy $β$- and EC spectra. The first efforts were focused on the development of large arrays for the measurement of the $^{187}$Re $β$-spectrum. In the last ten years, the attention moved to EC of $^{163}$Ho. This choice was mainly motivated by the very good performance which could be achieved with low temperature microcalorimeters enclosing $^{163}$Ho with respect to microcalorimeters with absorber containing $^{187}$Re. The development of low temperature microcalorimeters for the measurement of the finite neutrino mass is discussed and, in particular, the reasons for moving from $^{187}$Re to $^{163}$Ho. The possibility to reach sub-eV sensitivity on the effective electron neutrino mass with $^{163}$Ho, thanks to the multiplexing of large microcalorimeter arrays is demonstrated. In conclusion, an overview on other nuclides which have been proposed as good candidates, motivated by the excellent performance of low temperature microcalorimeters is presented.

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