论文标题

质子$e_γ$ = 1.3-2.4 GEV的质子$η$光增生的差分横截面和光子光束不对称

Differential cross sections and photon beam asymmetries of $η$ photoproduction on the proton at $E_γ$ = 1.3-2.4 GeV

论文作者

Hashimoto, T., Nam, T., Muramatsu, N., Ahn, J. K., Chang, W. C., Chen, J. Y., Chu, M. L., Date, S., Gogami, T., Goto, H., Hamano, H., He, Q. H., Hicks, K., Hiraiwa, T., Honda, Y., Hotta, T., Ikuno, H., Inoue, Y., Ishikawa, T., Jaegle, I., Jo, J. M., Kasamatsu, Y., Katsuragawa, H., Kido, S., Kon, Y., Matsumoto, S., Matsumura, Y., Miyabe, M., Mizutani, K., Nakamura, T., Nakano, T., Niiyama, M., Nozawa, Y., Ohashi, Y., Ohnishi, H., Ohta, T., Ozawa, K., Rangacharyulu, C., Ryu, S. Y., Sada, Y., Shibukawa, T., Shimizu, H., Shirai, R., Shiraishi, K., Strokovsky, E. A., Sugaya, Y., Sumihama, M., Suzuki, S., Tanaka, S., Taniguchi, Y., Tokiyasu, A., Tomida, N., Tsuchikawa, Y., Ueda, T., Yamazaki, H., Yamazaki, R., Yanai, Y., Yorita, T., Yoshida, C., Yosoi, M.

论文摘要

我们已经从质子靶标的$η$ erson的光生生源进行了独家测量,该质子的蛋白质靶标具有由BGO晶体(BGOEGG)制成的卵形热量计(BGOEGG)和在Spring-8 LEPS2 Beamine上的正向带电的粒子探测器。 $γp\至ηp$反应的差分横截面和光子光束不对称的反应以质量中心的能量($ W $)范围为$ 1.82 $ - $ 2.32 $ - $ 2.32 $ GEV,极性角度范围为$ -1.0 <\ cos {θ^qu cos {θ^qus {θ^η__ {\ Mathrm {\ Mathrm {C.M Mathrm {C.M. {C.M.}}}通过选择质子和两个由$η$ -Meson衰变产生的质子和两个$γ$的质量来识别反应。运动拟合方法被用来选择置信水平大于$ 1 $ \%的反应候选者。 $ W $ = $ 2.0 $ - $ 2.3 $ GEV的凹凸结构以极度向后的$η$ polar Angles确认,其中现有数据彼此不一致。这种凹凸结构可能与$ s \ bar {s} $ quarks的高自旋共振有关。光子束不对称的结果宽$η$极角范围是超过$ 2.1 $ GEV的光子束能量的新结果。这些结果不是由现有的部分波分析复制的。它们为高能量的核子共振研究提供了额外的限制。

We have carried out exclusive measurements for the photoproduction of an $η$ meson from a proton target with an egg-shaped calorimeter made of BGO crystals (BGOegg) and forward charged-particle detectors at the SPring-8 LEPS2 beamline. The differential cross sections and photon beam asymmetries of the $γp \to ηp$ reaction are measured in a center-of-mass energy ($W$) range of $1.82$-$2.32$ GeV and a polar angle range of $-1.0 < \cos{θ^η_{\mathrm{c.m.}}} < 0.6$. The reaction is identified by selecting a proton and two $γ$'s produced by an $η$-meson decay. The kinematic fit method was employed to select the reaction candidate with the confidence level larger than $1$\%. A bump structure at $W$ = $2.0$-$2.3$ GeV in the differential cross section is confirmed at extremely backward $η$ polar angles, where the existing data are inconsistent with each other. This bump structure is likely associated with high-spin resonances that couple with $s\bar{s}$ quarks. The results of the photon beam asymmetries in a wide $η$ polar angle range are new for the photon beam energies exceeding $2.1$ GeV. These results are not reproduced by the existing partial wave analyses. They provide an additional constraint to nucleon resonance studies at high energies.

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