用cd -3探测器在VEPP-2000对撞机上测量1.2 GeV以下\(\boldsymbol{e}^{\boldsymbol{+}}\boldsymbol{e}^{\boldsymbol{-}}\boldsymbol{\to}{\pi}^{\boldsymbol{+}}{\pi}^{\mathbf{-}}\)横截面

IF 0.4 4区 物理与天体物理 Q4 PHYSICS, MULTIDISCIPLINARY
G. V. Fedotovich, CMD-3 Collaboration
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引用次数: 0

摘要

在电子正电子对撞机VEPP-2000上,用CMD-3探测器在0.32 ~ 1.2 GeV的质心范围内测量了\(e^{+}e^{-}\to\pi^{+}\pi^{-}\)反应的截面。对采集到的数据进行分析,基于积分光度约62 \(\textrm{pb}^{-1}\)。在\(\rho\) -共振附近,系统不确定度约为0.7 \(\%\)。对通道\(\pi^{+}\pi^{-}\)的前后电荷不对称性也进行了测量。它清楚地表明了与传统标量QED预测的强烈偏差,但它与[1]很好地吻合。利用现有的介子形状因子的结果来评估强子对μ子异常磁矩的贡献,并揭示了与以往实验结果的差异。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Measurement of the \(\boldsymbol{e}^{\boldsymbol{+}}\boldsymbol{e}^{\boldsymbol{-}}\boldsymbol{\to}{\pi}^{\boldsymbol{+}}{\pi}^{\mathbf{-}}\) Cross Section below 1.2 GeV with the CMD-3 Detector at VEPP-2000 Collider

Measurement of the \(\boldsymbol{e}^{\boldsymbol{+}}\boldsymbol{e}^{\boldsymbol{-}}\boldsymbol{\to}{\pi}^{\boldsymbol{+}}{\pi}^{\mathbf{-}}\) Cross Section below 1.2 GeV with the CMD-3 Detector at VEPP-2000 Collider

The cross section of the reaction \(e^{+}e^{-}\to\pi^{+}\pi^{-}\) was measured in the center of mass energy range from 0.32 to 1.2 GeV with the CMD-3 detector at the electron-positron collider VEPP-2000. The analyses of the collected data based on the integrated luminosity of about 62 \(\textrm{pb}^{-1}\). The systematic uncertainty of about 0.7\(\%\) has been reached around \(\rho\)-resonance. The forward-backward charge asymmetry for the channel \(\pi^{+}\pi^{-}\) has also been measured. It clear demonstrates the strong deviation from the conventional scalar QED prediction, but it well agrees with [1]. The current results for pion form factor were used to evaluate the hadronic contribution to the anomalous magnetic moment of muon and reveal a discrepancy with the results of previous experiments.

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来源期刊
Moscow University Physics Bulletin
Moscow University Physics Bulletin PHYSICS, MULTIDISCIPLINARY-
CiteScore
0.70
自引率
0.00%
发文量
129
审稿时长
6-12 weeks
期刊介绍: Moscow University Physics Bulletin publishes original papers (reviews, articles, and brief communications) in the following fields of experimental and theoretical physics: theoretical and mathematical physics; physics of nuclei and elementary particles; radiophysics, electronics, acoustics; optics and spectroscopy; laser physics; condensed matter physics; chemical physics, physical kinetics, and plasma physics; biophysics and medical physics; astronomy, astrophysics, and cosmology; physics of the Earth’s, atmosphere, and hydrosphere.
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