Study of electron-positron annihilation into four pions within chiral effective field theory in the low energy region

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Main Authors: Zhou, Jia-Yu, Pan, Hao-Xiang, Dai, Ling-Yun
Format: Preprint
Published: 2025
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author Zhou, Jia-Yu
Pan, Hao-Xiang
Dai, Ling-Yun
author_facet Zhou, Jia-Yu
Pan, Hao-Xiang
Dai, Ling-Yun
contents In this paper, we employ chiral effective field theory to study the process of electron-positron annihilation into four pions in the low energy region within $E_{c.m.}\leq 0.6$ GeV. The prediction of the cross section is obtained through $SU(3)$ chiral perturbation theory up to the next-to-leading order, which is smaller than the experimental data in the energy region [0.6-0.65] GeV, though the data has only a few points and poor statistics. Then, the resonance chiral theory is applied to include the resonance contribution, with the lightest scalars and vectors written in the effective Lagrangians. A series of relevant decay widths and the masses of the vectors are studied to fix the unknown couplings. The resonance contribution should be one order larger than that of the chiral perturbation theory but still one to two orders smaller than the data. The significant discrepancy urged the new experimental measurements to give more guidance. We also compute the leading order hadronic vacuum polarization contribution from the four pion channels to the anomalous magnetic moment of the muon, $(g-2)_μ$. In the energy range from threshold up to 0.6 GeV within resonance chiral theory, the contributions are $a_μ=(0.680\pm0.062)\times10^{-16}$ and $a_μ=(0.597\pm0.058)\times10^{-16}$ for the processes of $e^+e^-\toπ^+π^+π^-π^-$, $π^0π^0π^+π^-$, respectively.
format Preprint
id arxiv_https___arxiv_org_abs_2505_00770
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Study of electron-positron annihilation into four pions within chiral effective field theory in the low energy region
Zhou, Jia-Yu
Pan, Hao-Xiang
Dai, Ling-Yun
High Energy Physics - Phenomenology
Nuclear Theory
In this paper, we employ chiral effective field theory to study the process of electron-positron annihilation into four pions in the low energy region within $E_{c.m.}\leq 0.6$ GeV. The prediction of the cross section is obtained through $SU(3)$ chiral perturbation theory up to the next-to-leading order, which is smaller than the experimental data in the energy region [0.6-0.65] GeV, though the data has only a few points and poor statistics. Then, the resonance chiral theory is applied to include the resonance contribution, with the lightest scalars and vectors written in the effective Lagrangians. A series of relevant decay widths and the masses of the vectors are studied to fix the unknown couplings. The resonance contribution should be one order larger than that of the chiral perturbation theory but still one to two orders smaller than the data. The significant discrepancy urged the new experimental measurements to give more guidance. We also compute the leading order hadronic vacuum polarization contribution from the four pion channels to the anomalous magnetic moment of the muon, $(g-2)_μ$. In the energy range from threshold up to 0.6 GeV within resonance chiral theory, the contributions are $a_μ=(0.680\pm0.062)\times10^{-16}$ and $a_μ=(0.597\pm0.058)\times10^{-16}$ for the processes of $e^+e^-\toπ^+π^+π^-π^-$, $π^0π^0π^+π^-$, respectively.
title Study of electron-positron annihilation into four pions within chiral effective field theory in the low energy region
topic High Energy Physics - Phenomenology
Nuclear Theory
url https://arxiv.org/abs/2505.00770