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Pion Polarizability 2022 Status Report

High Energy Physics - Phenomenology 2022-05-23 v1 High Energy Physics - Experiment

Abstract

The electric απ{\alpha}_{\pi} and magnetic βπ{\beta}_{\pi} charged pion Compton polarizabilities are of fundamental interest in the low-energy sector of quantum chromodynamics (QCD). They characterize the induced dipole moments of the pion during γπ{\gamma}{\pi} Compton scattering. Pion polarizabilities affect the shape of the γπ{\gamma}{\pi} Compton scattering angular distribution.The combination (απβπ)({\alpha}_{\pi} - {\beta}_{\pi}) was measured by: (1) CERN COMPASS via πZπZγ{\pi} Z \rightarrow {\pi} Z {\gamma} radiative pion Primakoff scattering in the nuclear Coulomb field, (2) SLAC PEP Mark-II via two-photon production of pion pairs, γγπ+π{\gamma} {\gamma} \rightarrow {\pi}^+ {\pi}^-, and (3) Mainz Microtron MAMI via radiative pion photoproduction from the proton, γpγπ+n{\gamma} p \rightarrow {\gamma} {\pi}^+ n. Ongoing and planned pion polarizability experiments (CERN COMPASS, BESIII at Beijing, JLab at Newport News) are also described. The Mark-II pion polarizability 95% confidence interval is approximately 011×104fm30-11 \times 10^{-4} {fm}^{3}, based on (απβπ)=(4.4±3.2)×104fm3({\alpha}_{\pi} - {\beta}_{\pi}) = (4.4 \pm 3.2) \times 10^{-4} {fm}^{3}. The Mainz value (απβπ)=11.6×104fm3({\alpha}_{\pi} - {\beta}_{\pi}) = 11.6 \times 10^{-4} {fm}^{3} is excluded on the basis of a dispersion relations calculation which uses the Mainz value as input, and gives significantly too large γγπ0π0{\gamma} {\gamma} \rightarrow {\pi}^{0} {\pi}^{0} cross sections compared to DESY Crystal Ball data. To date, only the COMPASS polarizability measurement has acceptably small uncertainties. Its value (απβπ)=(4.0±1.8)×104fm3({\alpha}_{\pi} - {\beta}_{\pi}) = (4.0 \pm 1.8) \times 10^{-4} {fm}^{3} agrees well with the two-loop ChPT prediction (απβπ)=(5.7±1.0)×104fm3({\alpha}_{\pi} - {\beta}_{\pi}) = (5.7 \pm 1.0) \times 10^{-4} {fm}^{3}, thereby strengthening the identification of the pion with the Goldstone boson of QCD.

Keywords

Cite

@article{arxiv.2205.09954,
  title  = {Pion Polarizability 2022 Status Report},
  author = {Murray Moinester},
  journal= {arXiv preprint arXiv:2205.09954},
  year   = {2022}
}

Comments

11 pages, 4 figures, Expanded version of talk to be presented at the 2022 APS Fall DNP Oct. 27 - 30, 2022 meeting in New Orleans, to be published as a review article. arXiv admin note: substantial text overlap with arXiv:1709.05159

R2 v1 2026-06-24T11:23:05.024Z