Chambers A J, Horsley R, Nakamura Y, Perlt H, Rakow P E L, Schierholz G, Schiller A, Somfleth K, Young R D, Zanotti J M
CSSM, Department of Physics, University of Adelaide, Adelaide, South Australia 5005, Australia.
School of Physics and Astronomy, University of Edinburgh, Edinburgh EH9 3FD, United Kingdom.
Phys Rev Lett. 2017 Jun 16;118(24):242001. doi: 10.1103/PhysRevLett.118.242001. Epub 2017 Jun 15.
Deep-inelastic scattering, in the laboratory and on the lattice, is most instructive for understanding how the nucleon is built from quarks and gluons. The long-term goal is to compute the associated structure functions from first principles. So far this has been limited to model calculations. In this Letter we propose a new method to compute the structure functions directly from the virtual, all-encompassing Compton amplitude, utilizing the operator product expansion. This overcomes issues of renormalization and operator mixing, which so far have hindered lattice calculations of power corrections and higher moments.
在实验室和格点上的深度非弹性散射,对于理解核子是如何由夸克和胶子构成的最具启发性。长期目标是从第一性原理计算相关的结构函数。到目前为止,这仅限于模型计算。在本信函中,我们提出了一种新方法,利用算符乘积展开直接从虚拟的、涵盖一切的康普顿振幅计算结构函数。这克服了重整化和算符混合的问题,这些问题迄今为止阻碍了对幂次修正和高阶矩的格点计算。