论文标题
来自欧几里得有限体积相关函数的无效有效野外理论中的两中性双β衰减
Two-neutrino double-beta decay in pionless effective field theory from a Euclidean finite-volume correlation function
论文作者
论文摘要
某些核同位素的两种中心双β衰减是自然界观察到的最稀有的标准模型过程之一。它的中产阶级对应物是一个异国情调的Lepton-number非强制性过程,被广泛搜索以确定中微子是否是Majorana Fermions。为了将这些过程的速率连接到标准模型以及超越标准模型相互作用之外,必须可靠地从理论中可靠地约束相应的核矩阵元素。晶格量子染色体动力学(LQCD)和低能量有效野外理论(EFTS)有望在约束两核子子过程的矩阵元素中起着至关重要的作用,这反过来又可以将输入输入到较大的同位素中的初始核结构计算中。关注$ nn \ to pp \((ee \barν_e\barν_e)$)$的振幅是在这项工作中以近代到领先的顺序构建的,这表明了重新分配尺度独立的振幅的出现,并且没有任何新的低效果,并且没有任何新的序列。最重要的是,它显示了欧几里得和有限体积时空中LQCD四点相关函数如何用于约束EFT中的Minkowski Infinite-volume幅度。相关的单湿过程提供了相同的形式主义,这是对双$β$衰减形式主义的输入。概述了双向振幅的LQCD-EFT匹配程序铺平了道路,朝着限制两种核子矩阵元件,进入中微子双β衰变幅度,并使用轻度的Majorana Neutrino。
Two-neutrino double-beta decay of certain nuclear isotopes is one of the rarest Standard Model processes observed in nature. Its neutrinoless counterpart is an exotic lepton-number nonconserving process that is widely searched for to determine if the neutrinos are Majorana fermions. In order to connect the rate of these processes to the Standard Model and beyond the Standard Model interactions, it is essential that the corresponding nuclear matrix elements are constrained reliably from theory. Lattice quantum chromodynamics (LQCD) and low-energy effective field theories (EFTs) are expected to play an essential role in constraining the matrix element of the two-nucleon subprocess, which could in turn provide the input into ab initio nuclear-structure calculations in larger isotopes. Focusing on the two-neutrino process $nn \to pp \, (ee \barν_e\barν_e)$, the amplitude is constructed in this work in pionless EFT at next-to-leading order, demonstrating the emergence of a renormalization-scale independent amplitude and the absence of any new low-energy constant at this order beyond those present in the single-weak process. Most importantly, it is shown how a LQCD four-point correlation function in Euclidean and finite-volume spacetime can be used to constrain the Minkowski infinite-volume amplitude in the EFT. The same formalism is provided for the related single-weak process, which is an input to the double-$β$ decay formalism. The LQCD-EFT matching procedure outlined for the double-weak amplitude paves the road toward constraining the two-nucleon matrix element entering the neutrinoless double-beta decay amplitude with a light Majorana neutrino.