论文标题

核双β衰减的晶格QCD输入

Lattice QCD Inputs for Nuclear Double Beta Decay

论文作者

Cirigliano, Vincenzo, Detmold, William, Nicholson, Amy, Shanahan, Phiala

论文摘要

在最终状态下有和没有中微子的二阶β-末期过程是核物理学和中微子性质的关键探针。中子双β衰减是已经观察到的最稀有的标准模型过程,并对弱核相互作用的理解提供了独特的测试。对中微子双β衰变的观察会表明,中微子是主要的fermions,而Lepton数量保存在本质上是侵犯的。尽管在理解这些过程的现象学方法中取得了重大进展,但在这些过程与标准模型的物理学之间建立联系是一项关键任务,因为它将提供对未来实验的设计和解释的投入。对双β衰减过程的强大相互作用贡献是非扰动的,只能通过晶格量子铬铬酸(LQCD)和核多体计算的结合来系统地解决。在这篇综述中,讨论了当前建立LQCD连接的努力。 LQCD计算中性氟的贡献$ nn \ to pp e^ - e^ - \barν_e\barν_e$以及对各种中性中心溶液的pionic pioninic跃迁的审查,这些计算的连接是通过使用有效的场理论的使用,这些计算与双 - 贝塔(Double-beta)衰减的现象学的联系(目前,LQCD计算仅限于小型核系统和开创性子系统,并且需要与适当的EFT进行匹配以具有直接的现象学影响。但是,这些计算已经定性地揭示了EFT中的术语仅限于双β衰减过程本身或使用LQCD的输入。还讨论了较大核直接计算的未来前景。

Second order beta-decay processes with and without neutrinos in the final state are key probes of nuclear physics and of the nature of neutrinos. Neutrinoful double-beta decay is the rarest Standard Model process that has been observed and provides a unique test of the understanding of weak nuclear interactions. Observation of neutrinoless double-beta decay would reveal that neutrinos are Majorana fermions and that lepton number conservation is violated in nature. While significant progress has been made in phenomenological approaches to understanding these processes, establishing a connection between these processes and the physics of the Standard Model and beyond is a critical task as it will provide input into the design and interpretation of future experiments. The strong-interaction contributions to double-beta decay processes are non-perturbative and can only be addressed systematically through a combination of lattice Quantum Chromoodynamics (LQCD) and nuclear many-body calculations. In this review, current efforts to establish the LQCD connection are discussed for both neutrinoful and neutrinoless double-beta decay. LQCD calculations of the hadronic contributions to the neutrinoful process $nn\to pp e^- e^- \barν_e\barν_e$ and to various neutrinoless pionic transitions are reviewed, and the connections of these calculations to the phenomenology of double-beta decay through the use of effective field theory (EFTs) is highlighted. At present, LQCD calculations are limited to small nuclear systems, and to pionic subsystems, and require matching to appropriate EFTs to have direct phenomenological impact. However, these calculations have already revealed qualitatively that there are terms in the EFTs that can only be constrained from double-beta decay processes themselves or using inputs from LQCD. Future prospects for direct calculations in larger nuclei are also discussed.

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