Brofferio Chiara, Dell'Oro Stefano
Dipartimento di Fisica, Università di Milano - Bicocca, 20126 Milano, Italy.
Center for Neutrino Physics, Virginia Polytechnic Institute and State University, Blacksburg, Virginia 24061, USA.
Rev Sci Instrum. 2018 Dec;89(12):121502. doi: 10.1063/1.5031485.
Neutrinoless double beta decay (0) is a direct probe of physics beyond the standard model. Its discovery would demonstrate that the lepton number is not a symmetry of nature and would provide us with unique information on the nature and mass of the neutrinos. Among the experimental techniques employed in the investigation of this rare process, thermal detectors fulfill the requirements for a powerful search, showing an excellent energy resolution and the possibility of scaling to very large masses. In this work, we review the long chain of bolometric experiments based on TeO crystals that were and continue to be carried out at the Laboratori Nazionali del Gran Sasso (Italy), searching for 0 of Te. We illustrate the progress and improvements achieved in almost thirty years of measurements and compare the various performance and results. We describe the several steps that led to the CUORE detector, the latest of this series and presently in data taking, and we highlight the challenges that a next bolometric experiment will face in order to further improve the sensitivity, especially concerning the background abatement. Finally, we emphasize the advantages of Te in the search for 0 with a further future experiment.
无中微子双β衰变(0νββ)是超出标准模型的物理学的直接探测手段。它的发现将证明轻子数不是自然的一种对称性,并将为我们提供有关中微子性质和质量的独特信息。在研究这个罕见过程所采用的实验技术中,热探测器满足了进行有力搜索的要求,展现出出色的能量分辨率以及扩大到非常大质量的可能性。在这项工作中,我们回顾了基于碲化氧晶体的一系列量热实验的漫长历程,这些实验过去在意大利格兰萨索国家实验室进行,并且仍在继续进行,旨在寻找碲的0νββ衰变。我们阐述了近三十年测量中取得的进展和改进,并比较了各种性能和结果。我们描述了通向CUORE探测器的几个步骤,它是该系列的最新探测器,目前正在采集数据,并且我们强调了下一代量热实验为进一步提高灵敏度,尤其是在降低本底方面将面临的挑战。最后,我们强调了碲在未来进一步实验中寻找0νββ衰变方面的优势。