论文标题

精密QCD,HADRONIC结构和前向QCD,重离子:Energy Frontier主题组5、6、7提交给Snowmass 2021

Precision QCD, Hadronic Structure & Forward QCD, Heavy Ions: Report of Energy Frontier Topical Groups 5, 6, 7 submitted to Snowmass 2021

论文作者

Begel, M., Hoeche, S., Schmitt, M., Lin, H. -W., Nadolsky, P. M., Royon, C., Lee, Y-J., Mukherjee, S., Baldenegro, C., Campbell, J., Chachamis, G., Celiberto, F. G., Cooper-Sarkar, A. M., d'Enterria, D., Diefenthaler, M., Fucilla, M., Garzelli, M. V., Guzzi, M., Hentschinski, M., Hobbs, T. J., Huston, J., Isaacson, J., Klein, S. R., Kling, F., Kotko, P., Kovchegov, Yu. V., Krintiras, G., Kronfeld, A. S., Kutak, K., Mistlberger, B., Moult, I., Mrenna, S., Nachman, B., Narain, M., Olness, F. I., Papa, A., Pisarski, R. D., Pitt, M., Rappoccio, S., Reina, L., Reuter, J., Reno, M. H., Salam, G. P., Strikman, M., Tran, N., Tricoli, A., Ubiali, M., van Hameren, A., Vossen, A., Xie, K.

论文摘要

该报告是代表2021年雪人社区规划练习的三个能源边界局部局部组成的。它总结了高能实验和QCD理论中强相互作用的研究的状态和含义。我们强调了未来十年的这些研究的丰富景观和广泛的影响。在高亮度大型强调对撞机(LHC)物理计划中,HADRONIC相互作用起着核心作用,并且(HL-)LHC与计划或建议的实验之间存在强烈的协同作用,在美国电子撞机,CERN前锋物理学,高强度,高强度功能,高强度设施以及未来的Tev-Range Lepton Lepton和Hadron Cilliders。研究了对强耦合和多种非扰动分布和碎片函数的精确确定的前景。我们还回顾了用核子,离子和光子初始状态在高能量和高密度散射过程中QCD新动力学机制的设想测试的潜力。总结了高能重型离子计划在核结构和核培养基研究中的重要作用,以及其与涉及核子的QCD的联系。我们解决了多环QCD计算,晶格QCD,JET子结构和事件生成器中正在进行的和未来的理论进步。强调了实验测量,理论预测,大规模数据分析和高性能计算之间的横切连接。

This report was prepared on behalf of three Energy Frontier Topical Groups of the Snowmass 2021 Community Planning Exercise. It summarizes the status and implications of studies of strong interactions in high-energy experiments and QCD theory. We emphasize the rich landscape and broad impact of these studies in the decade ahead. Hadronic interactions play a central role in the high-luminosity Large Hadron Collider (LHC) physics program, and strong synergies exist between the (HL-)LHC and planned or proposed experiments at the U.S. Electron-Ion Collider, CERN forward physics experiments, high-intensity facilities, and future TeV-range lepton and hadron colliders. Prospects for precision determinations of the strong coupling and a variety of nonperturbative distribution and fragmentation functions are examined. We also review the potential of envisioned tests of new dynamical regimes of QCD in high-energy and high-density scattering processes with nucleon, ion, and photon initial states. The important role of the high-energy heavy-ion program in studies of nuclear structure and the nuclear medium, and its connections with QCD involving nucleons are summarized. We address ongoing and future theoretical advancements in multi-loop QCD computations, lattice QCD, jet substructure, and event generators. Cross-cutting connections between experimental measurements, theoretical predictions, large-scale data analysis, and high-performance computing are emphasized.

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