论文标题

质子旋转结构功能$ g_2 $和强QCD制度中的广义极化能力

The Proton Spin Structure Function $g_2$ and Generalized Polarizabilities in the Strong QCD Regime

论文作者

Ruth, D., Zielinski, R., Gu, C., Allada, M., Badman, T., Huang, M., Liu, J., Zhu, P., Allada, K., Zhang, J., Camsonne, A., Chen, J. P., Slifer, K., Aniol, K., Annand, J., Arrington, J., Averett, T., Baghdasaryan, H., Bellini, V., Boeglin, W., Brock, J., Carlin, C., Chen, C., Cisbani, E., Crabb, D., Daniel, A., Day, D., Duve, R., Fassi, L. El, Friedman, M., Fuchey, E., Gao, H., Gilman, R., Glamazdin, S., Gueye, P., Hafez, M., Han, Y., Hansen, O., Shabestari, M. Hashemi, Hen, O., Higinbotham, D., Horn, T., Iqbal, S., Jensen, E., Kang, H., Keith, C. D., Kelleher, A., Keller, D., Khanal, H., Korover, I., Kumbartzki, G., Li, W., Lichtenstadt, J., Lindgren, R., Long, E., Malace, S., Markowitz, P., Maxwell, J., Meekins, D. M., Meziani, Z. E., McLean, C., Michaels, R., Mihovilovic, M., Muangma, N., Camacho, C. Munoz, Musson, J., Myers, K., Oh, Y., Carmignotto, M. Pannunzio, Perdrisat, C., Phillips, S., Piasetzky, E., Pierce, J., Punjabi, V., Qiang, Y., Reimer, P. E., Roblin, Y., Ron, G., Rondon, O., Russo, G., Saenboonruang, K., Sawatzky, B., Shahinyan, A., Shneor, R., Sjoegren, J., Solvignon-Slifer, P., Sparveris, N., Sulkosky, V., Wesselmann, F., Yan, W., Yang, H., Yao, H., Ye, Z., Yurov, M., Zhang, Y., Zhao, Y. X., Zheng, X.

论文摘要

在低能量或与低动量转移$ q^2 $的相互作用时,强烈的互动尚未得到很好的了解,但是我们最清晰的见解之一来自手性扰动理论($χ$ $ pt)。这种有效的处理可为核次通用极化性提供可测试的预测 - 描述核子对外场的反应的基本量。我们已经测量了质子在$χ$ PT有效的区域中质子的广义自旋极化。我们的结果包括有史以来的第一个数据,用于横向纵向自旋极化性$δ_{lt} $,还将第一次极化性$ \ bar {d_2} $的覆盖范围扩展到了第一次非常低的$ q^2 $。这些结果是从结构函数$ g_2 $的矩中提取的,$ g_2 $,该数量表征了质子的内部自旋结构。我们的实验使用偏振电子束和偏振固体氨(NH $ _3 $)目标在杰斐逊实验室进行。 $δ_{lt} $极化性仍然是$χ$ pt的挑战,尽管对更高的共振贡献的敏感性降低了;最近的竞争计算仍然彼此不同意,并以非常低的$ q^2 $的差异与所测得的中子数据不同。我们的质子结果提供了现有计算之间的区别能力,并将有助于更好地理解这种强大的QCD制度。

The strong interaction is not well understood at low energy, or for interactions with low momentum transfer $Q^2$, but one of the clearest insights we have comes from Chiral Perturbation Theory ($χ$PT). This effective treatment gives testable predictions for the nucleonic generalized polarizabilities -- fundamental quantities describing the nucleon's response to an external field. We have measured the proton's generalized spin polarizabilities in the region where $χ$PT is expected to be valid. Our results include the first ever data for the transverse-longitudinal spin polarizability $δ_{LT}$, and also extend the coverage of the polarizability $\bar{d_2}$ to very low $Q^2$ for the first time. These results were extracted from moments of the structure function $g_2$, a quantity which characterizes the internal spin structure of the proton. Our experiment ran at Jefferson Lab using a polarized electron beam and a polarized solid ammonia (NH$_3$) target. The $δ_{LT}$ polarizability has remained a challenging quantity for $χ$PT to reproduce, despite its reduced sensitivity to higher resonance contributions; recent competing calculations still disagree with each other and also diverge from the measured neutron data at very low $Q^2$. Our proton results provide discriminating power between existing calculations, and will help provide a better understanding of this strong QCD regime.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源