Chiral properties of the nucleon interpolating current and $θ$-dependent observables

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Ema, Yohei, Gao, Ting, Pospelov, Maxim, Ritz, Adam
Format: Preprint
Published: 2024
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866909203154599936
author Ema, Yohei
Gao, Ting
Pospelov, Maxim
Ritz, Adam
author_facet Ema, Yohei
Gao, Ting
Pospelov, Maxim
Ritz, Adam
contents We revisit the chiral properties of nucleon interpolating currents, and show that of the two leading order currents $j_1$ and $j_2$, only two linear combinations $j_1\pm j_2$ transform covariantly under the anomalous $U(1)_A$ symmetry. As a result, calculations of quantities which vanish by symmetry in the chiral limit may produce unphysical results if carried out with different linear combinations of the currents. This includes observables such as electric dipole moments, induced by the QCD parameter $θ$, and the $θ$-dependence of the nucleon mass. For completeness, we also exhibit the leading order results for nucleon electric dipole moments ($d_{n,p}$) induced by $θ$, and the nucleon magnetic moments ($μ_{n,p}$), when calculated using QCD sum rules for both the covariant choices of the nucleon interpolating current. The results in each channel, conveniently expressed as the ratios, $d_{n,p}/μ_{n,p}$, are numerically consistent, and reflect the required physical dependence on $θ$.
format Preprint
id arxiv_https___arxiv_org_abs_2405_08856
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Chiral properties of the nucleon interpolating current and $θ$-dependent observables
Ema, Yohei
Gao, Ting
Pospelov, Maxim
Ritz, Adam
High Energy Physics - Phenomenology
High Energy Physics - Experiment
Nuclear Theory
We revisit the chiral properties of nucleon interpolating currents, and show that of the two leading order currents $j_1$ and $j_2$, only two linear combinations $j_1\pm j_2$ transform covariantly under the anomalous $U(1)_A$ symmetry. As a result, calculations of quantities which vanish by symmetry in the chiral limit may produce unphysical results if carried out with different linear combinations of the currents. This includes observables such as electric dipole moments, induced by the QCD parameter $θ$, and the $θ$-dependence of the nucleon mass. For completeness, we also exhibit the leading order results for nucleon electric dipole moments ($d_{n,p}$) induced by $θ$, and the nucleon magnetic moments ($μ_{n,p}$), when calculated using QCD sum rules for both the covariant choices of the nucleon interpolating current. The results in each channel, conveniently expressed as the ratios, $d_{n,p}/μ_{n,p}$, are numerically consistent, and reflect the required physical dependence on $θ$.
title Chiral properties of the nucleon interpolating current and $θ$-dependent observables
topic High Energy Physics - Phenomenology
High Energy Physics - Experiment
Nuclear Theory
url https://arxiv.org/abs/2405.08856