Nuclear responses for double beta decay and muon capture

L. Jokiniemi, J. Suhonen, H. Ejiri
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引用次数: 1

Abstract

The existence of the neutrinoless double beta (0νββ) decay is one of the most intriguing open questions in the neutrino physics field. Despite many large-scale experiments have aimed to measure the reaction for decades, it has not yet been observed. Therefore, accurate theoretical calculations on 0νββ are crucial. To describe the double beta decay processes reliably one needs a possibility to test the involved virtual transitions against experimental data. In this work we manifest how to utilise the charge-exchange and ordinary muon capture (OMC) data in the study of 0νββ decay.The existence of the neutrinoless double beta (0νββ) decay is one of the most intriguing open questions in the neutrino physics field. Despite many large-scale experiments have aimed to measure the reaction for decades, it has not yet been observed. Therefore, accurate theoretical calculations on 0νββ are crucial. To describe the double beta decay processes reliably one needs a possibility to test the involved virtual transitions against experimental data. In this work we manifest how to utilise the charge-exchange and ordinary muon capture (OMC) data in the study of 0νββ decay.
双β衰变和介子捕获的核反应
无中微子双β (0νββ)衰变的存在是中微子物理学领域最有趣的开放性问题之一。几十年来,尽管许多大规模的实验都试图测量这种反应,但它还没有被观察到。因此,精确的0νββ理论计算是至关重要的。为了可靠地描述双β衰变过程,需要有可能根据实验数据测试所涉及的虚拟跃迁。在这项工作中,我们展示了如何利用电荷交换和普通μ子捕获(OMC)数据来研究0νββ衰变。无中微子双β (0νββ)衰变的存在是中微子物理学领域最有趣的开放性问题之一。几十年来,尽管许多大规模的实验都试图测量这种反应,但它还没有被观察到。因此,精确的0νββ理论计算是至关重要的。为了可靠地描述双β衰变过程,需要有可能根据实验数据测试所涉及的虚拟跃迁。在这项工作中,我们展示了如何利用电荷交换和普通μ子捕获(OMC)数据来研究0νββ衰变。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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