Center for Theoretical Physics, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, USA.
Perimeter Institute for Theoretical Physics, Waterloo, Ontario N2L 2Y5, Canada.
Phys Rev Lett. 2019 Feb 22;122(7):072003. doi: 10.1103/PhysRevLett.122.072003.
The distributions of pressure and shear forces inside the proton are investigated using lattice quantum chromodynamics (LQCD) calculations of the energy momentum tensor, allowing the first model-independent determination of these fundamental aspects of proton structure. This is achieved by combining recent LQCD results for the gluon contributions to the energy momentum tensor with earlier calculations of the quark contributions. The utility of LQCD calculations in exploring, and supplementing, the assumptions in a recent extraction of the pressure distribution in the proton from deeply virtual Compton scattering is also discussed. Based on this study, the target kinematics for experiments aiming to determine the pressure and shear distributions with greater precision at Thomas Jefferson National Accelerator Facility and a future electron ion collider are investigated.
利用格点量子色动力学(LQCD)计算能量-动量张量,研究了质子内部压力和切应力的分布,从而首次实现了对质子结构这两个基本方面的模型独立测定。这是通过结合最近的 LQCD 计算结果,得到了对能量-动量张量的胶子贡献,同时也结合了之前的对夸克贡献的计算结果。本文还讨论了 LQCD 计算在探索和补充近期从深度非弹性 Compton 散射中提取质子内压力分布的假设方面的应用。基于这项研究,我们探讨了在托马斯·杰斐逊国家加速器实验室和未来的电子离子对撞机上进行实验以更高精度确定压力和切应力分布的目标动力学。