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γ[over →]p → π^{-}Δ^{++}(1232) 反应在 forward π^{-} 角度下的微分截面和光子束不对称性,γ 能量为 1.5-2.95 GeV。

Differential Cross Section and Photon-Beam Asymmetry for the γ[over →]p → π^{-}Δ^{++}(1232) Reaction at Forward π^{-} Angles for E_{γ}=1.5-2.95  GeV.

机构信息

Research Center for Nuclear Physics, Osaka University, Ibaraki, Osaka 567-0047, Japan.

Institute of Physics, Academia Sinica, Taipei 11529, Taiwan.

出版信息

Phys Rev Lett. 2018 May 18;120(20):202004. doi: 10.1103/PhysRevLett.120.202004.

Abstract

Differential cross sections and photon-beam asymmetries for the γ[over →]p→π^{-}Δ^{++}(1232) reaction have been measured for 0.7<cosθ_{π}^{c.m.}<1 and E_{γ}=1.5-2.95  GeV at SPring-8/LEPS. The first-ever high statistics cross-section data are obtained in this kinematical region, and the asymmetry data for 1.5<E_{γ}(GeV)<2.8 are obtained for the first time. This reaction has a unique feature for studying the production mechanisms of a pure uu[over ¯] quark pair in the final state from the proton. Although there is no distinct peak structure in the cross sections, a non-negligible excess over the theoretical predictions is observed at E_{γ}=1.5-1.8  GeV. The asymmetries are found to be negative in most of the present kinematical regions, suggesting the dominance of π exchange in the t channel. The negative asymmetries at forward meson production angles are different from the asymmetries previously measured for the photoproduction reactions producing a dd[over ¯] or an ss[over ¯] quark pair in the final state. Advanced theoretical models introducing nucleon resonances and additional unnatural-parity exchanges are needed to reproduce the present data.

摘要

γ[p 反]p→π^{-}Δ^{++}(1232)反应的微分截面和光子束不对称性已经在 SPring-8/LEPS 上进行了测量,其角分布为 0.7<cosθ_{π}^{c.m.}<1 和 E_{γ}=1.5-2.95  GeV。在这个运动学区域首次获得了具有高统计数据的截面数据,并且首次获得了 1.5<E_{γ}(GeV)<2.8 的不对称性数据。该反应具有独特的特点,可用于研究质子末态中纯 uu[over ¯]夸克对的产生机制。尽管在截面中没有明显的峰结构,但在 E_{γ}=1.5-1.8  GeV 处观察到了与理论预测相比不可忽略的过剩。在大多数当前的运动学区域中,不对称性为负,表明在 t 道中π交换占主导地位。前向介子产生角处的负不对称性与以前测量的产生末态 dd[over ¯]或 ss[over ¯]夸克对的光致产生反应的不对称性不同。需要引入核子共振和额外的非自然宇称交换的先进理论模型来重现当前的数据。

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