Department of Physics, Wuppertal University, Gaussstrasse 20, D-42119 Wuppertal, Germany.
Department of Physics, Wuppertal University, Gaussstrasse 20, D-42119 Wuppertal, Germany and IAS/JSC, Forschungszentrum Jülich, D-52425 Jülich, Germany.
Phys Rev Lett. 2013 Dec 20;111(25):252001. doi: 10.1103/PhysRevLett.111.252001. Epub 2013 Dec 17.
While electromagnetic and up-down quark mass difference effects on octet baryon masses are very small, they have important consequences. The stability of the hydrogen atom against beta decay is a prominent example. Here, we include these effects by adding them to valence quarks in a lattice QCD calculation based on Nf=2+1 simulations with five lattice spacings down to 0.054 fm, lattice sizes up to 6 fm, and average up-down quark masses all the way down to their physical value. This allows us to gain control over all systematic errors, except for the one associated with neglecting electromagnetism in the sea. We compute the octet baryon isomultiplet mass splittings, as well as the individual contributions from electromagnetism and the up-down quark mass difference. Our results for the total splittings are in good agreement with experiment.
虽然电磁和上下夸克质量差效应对八重态重子质量的影响很小,但它们具有重要的后果。氢原子对β衰变的稳定性就是一个突出的例子。在这里,我们通过在格点 QCD 计算中向价夸克中添加这些效应来考虑它们,该计算基于 Nf=2+1 模拟,使用了五个格点间距,低至 0.054 fm,格点大小高达 6 fm,以及一直降低到其物理值的平均上下夸克质量。这使我们能够控制所有系统误差,除了在海相中忽略电磁作用所带来的误差。我们计算了八重态重子同位旋多重态的质量分裂,以及电磁作用和上下夸克质量差的单独贡献。我们对总分裂的结果与实验很好地符合。