Mount Allison University, Sackville, New Brunswick, E4L 1E6, Canada.
Phys Rev Lett. 2013 Aug 9;111(6):062004. doi: 10.1103/PhysRevLett.111.062004. Epub 2013 Aug 7.
A precision measurement of the differential cross sections dσ/dΩ and the linearly polarized photon asymmetry Σ≡(dσ⊥-dσ∥)/(dσ⊥+dσ∥) for the γp→π0p reaction in the near-threshold region has been performed with a tagged photon beam and almost 4π detector at the Mainz Microtron. The Glasgow-Mainz photon tagging facility along with the Crystal Ball/TAPS multiphoton detector system and a cryogenic liquid hydrogen target were used. These data allowed for a precise determination of the energy dependence of the real parts of the S- and all three P-wave amplitudes for the first time and provide the most stringent test to date of the predictions of chiral perturbation theory and its energy region of agreement with experiment.
利用标记光子束和近 4π 探测器在美因茨微回旋加速器上对近阈区 γp→π0p 反应的微分截面 dσ/dΩ 和线偏振光子不对称性 Σ≡(dσ⊥-dσ∥)/(dσ⊥+dσ∥)进行了精密测量。格拉斯哥-美因茨光子标记装置与 Crystal Ball/TAPS 多光子探测器系统和低温液氢靶一起使用。这些数据首次允许精确确定 S 波和所有三个 P 波振幅实部的能量依赖性,并提供了迄今为止对手征微扰理论及其与实验一致的能量区域的预测的最严格检验。