论文标题

雪人质量2021白皮书:精确边界处的质子结构

Snowmass 2021 whitepaper: Proton structure at the precision frontier

论文作者

Amoroso, S., Apyan, A., Armesto, N., Ball, R. D., Bertone, V., Bissolotti, C., Bluemlein, J., Boughezal, R., Bozzi, G., Britzger, D., Buckley, A., Candido, A., Carrazza, S., Celiberto, F. G., Cerci, S., Chachamis, G., Cooper-Sarkar, A. M., Courtoy, A., Cridge, T., Cruz-Martinez, J. M., Giuli, F., Guzzi, M., Gwenlan, C., Harland-Lang, L. A., Hekhorn, F., Hobbs, T. J., Hoeche, S., Huss, A., Huston, J., Jalilian-Marian, J., Klein, M., Krintiras, G. K., Loizides, C., Lin, H. -W., Magni, G., Malaescu, B., Mistlberger, B., Moch, S., Nadolsky, P. M., Nocera, E. R., Olness, F. I., Petriello, F., Pires, J., Rabbertz, K., Rojo, J., Schnell, G., Schwan, C., Siodmok, A., Soper, D. E., Sutton, M., Thorne, R. S., Ubiali, M., Vita, G., Weber, J. H., Xie, K., Yuan, C. -P., Zhou, B.

论文摘要

压倒性的强子围墙的理论预测需要Parton分布函数(PDF),这是下一代高能实验的理论基础架构的重要组成部分。该白皮书总结了确定适用于广泛能量和实验的高精度PDF的状态和未来前景,尤其是在标准模型的精确测试中,以及在高亮度大型HADRON撞机撞机和电子碰撞器的新物理搜索中。我们讨论了实验测量,QCD理论,全局分析方法和计算中所设想的进步,这些进步是将核中未偏振的PDF带到N2LO中的N2LO和N3LO耦合强度的N3LO精度所必需的。特别注意在Precision PDF分析时代出现的新任务,例如那些专注于实验测量和理论计算中系统因素的强大控制的任务。探索了强子结构的实验和理论研究之间的各种协同作用,包括研究核和梅森靶标的PDF的机会,具有电牵引力贡献的PDF或对横向动量的依赖,用于对PDF的现象学模型之间的敏锐比较,用于PDFS模型和计算的PDF和计算,以及用于离散效应的杂货和计算方法。 [提交给美国粒子物理未来的社区研究(Snowmass 2021)。]

An overwhelming number of theoretical predictions for hadron colliders require parton distribution functions (PDFs), which are an important ingredient of theory infrastructure for the next generation of high-energy experiments. This whitepaper summarizes the status and future prospects for determination of high-precision PDFs applicable in a wide range of energies and experiments, in particular in precision tests of the Standard Model and in new physics searches at the high-luminosity Large Hadron Collider and Electron-Ion Collider. We discuss the envisioned advancements in experimental measurements, QCD theory, global analysis methodology, and computing that are necessary to bring unpolarized PDFs in the nucleon to the N2LO and N3LO accuracy in the QCD coupling strength. Special attention is given to the new tasks that emerge in the era of the precision PDF analysis, such as those focusing on the robust control of systematic factors both in experimental measurements and theoretical computations. Various synergies between experimental and theoretical studies of the hadron structure are explored, including opportunities for studying PDFs for nuclear and meson targets, PDFs with electroweak contributions or dependence on the transverse momentum, for incisive comparisons between phenomenological models for the PDFs and computations on discrete lattice, and for cross-fertilization with machine learning/AI approaches. [Submitted to the US Community Study on the Future of Particle Physics (Snowmass 2021).]

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