Next-to-leading-order prediction for the neutrinoless double-beta decay

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Yang, Y. L., Zhao, P. W.
Format: Preprint
Published: 2025
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866916767290359808
author Yang, Y. L.
Zhao, P. W.
author_facet Yang, Y. L.
Zhao, P. W.
contents The neutrinoless double-beta decay ($0νββ$) of two neutrons$nn \rightarrow ppee$ is the elementary subprocess of $0νββ$ decay in nuclei. Accurate knowledge of the $nn \rightarrow ppee$ amplitude is required to pin down the short-range contributions in the nuclear matrix elements of the candidate nuclei for large-scale $0νββ$ searches. In this Letter, we report the first next-to-leading-order prediction of the nn \rightarrow ppee amplitude, with Bayesian uncertainty quantification. This is made possible by the development of the relativistic chiral effective field theory, in which no unknown contact term is required up to next-to-leading order. The theory is validated by reproducing in a parameter-free way the available data on the charge independence and charge symmetry breaking contributions in the two-nucleon scattering. The present work makes an essential step towards addressing the uncertainty in the theoretical calculations of the nuclear matrix elements relevant for $0νββ$ searches.
format Preprint
id arxiv_https___arxiv_org_abs_2505_24121
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Next-to-leading-order prediction for the neutrinoless double-beta decay
Yang, Y. L.
Zhao, P. W.
Nuclear Theory
High Energy Physics - Experiment
High Energy Physics - Phenomenology
Nuclear Experiment
The neutrinoless double-beta decay ($0νββ$) of two neutrons$nn \rightarrow ppee$ is the elementary subprocess of $0νββ$ decay in nuclei. Accurate knowledge of the $nn \rightarrow ppee$ amplitude is required to pin down the short-range contributions in the nuclear matrix elements of the candidate nuclei for large-scale $0νββ$ searches. In this Letter, we report the first next-to-leading-order prediction of the nn \rightarrow ppee amplitude, with Bayesian uncertainty quantification. This is made possible by the development of the relativistic chiral effective field theory, in which no unknown contact term is required up to next-to-leading order. The theory is validated by reproducing in a parameter-free way the available data on the charge independence and charge symmetry breaking contributions in the two-nucleon scattering. The present work makes an essential step towards addressing the uncertainty in the theoretical calculations of the nuclear matrix elements relevant for $0νββ$ searches.
title Next-to-leading-order prediction for the neutrinoless double-beta decay
topic Nuclear Theory
High Energy Physics - Experiment
High Energy Physics - Phenomenology
Nuclear Experiment
url https://arxiv.org/abs/2505.24121