论文标题
使用Balitsky-Kovchegov方程来预测未来电子离子山利区
Predictions for future electron-ion colliders using the Balitsky--Kovchegov equation
论文作者
论文摘要
这项贡献介绍了颜色偶极子图片中低X上几个QCD过程的最新预测,这对于当前的强子 - 戴隆和未来的电子 - 戴隆颜色colling镜很感兴趣。使用对质子和核靶标的Balitsky-Kovchegov方程的解决方案得出预测。研究了核病例的两种不同的方法:使用新提出的初始条件类型获得的解决方案,该溶液代表给定核的初始状态以及基于代表质子耦合到Glauber-Gribov处方的质子的初始条件的溶液。在以下照片 - 核过程中研究了这两种方法的不同能量演变的影响:超级外交碰撞中J/PSI梅森的连贯性和衍射性疾病的产生,以及深层虚拟的康普顿散射。通过与HERA和LHC的可用数据以及受彩色玻璃冷凝物框架启发的其他模型进行比较,证明未来的测量值对于区分不同饱和物理学方法将是有用的。该贡献在2022年的Hot Quarks 2022-年轻科学家的讲习班上,有关超旧核核核核碰撞的物理学,美国科罗拉多州Dao House,10月11日至17日,2022年10月11日至17日。
This contribution presents the latest predictions for several QCD processes at low-x in the color dipole picture which are of interest for current hadron-hadron and future electron-hadron colliders. The predictions are derived using the solution to the Balitsky-Kovchegov equation for proton and nuclear targets. Two different approaches to the nuclear case are studied: a solution obtained using a newly proposed type of initial condition which represents the initial state of a given nucleus and the solutions based on an initial condition representing a proton coupled to a Glauber-Gribov prescription. The influence from the different energy evolutions of these two approaches are studied in the following photo-nuclear processes: inclusive and diffractive DIS, coherent production of a J/psi meson in ultra-peripheral collisions, and the deeply virtual Compton scattering. By comparison to the available data from HERA and the LHC and to the other models inspired by the Color Glass Condensate framework, it is demonstrated that the future measurements will be useful to discriminate among different approaches to saturation physics. The contribution was presented at the Hot Quarks 2022 - Workshop for young scientists on the physics of ultrarelativistic nucleus-nucleus collisions, Dao House, Colorado, USA, October 11-17 2022.