论文标题

质子中固有魅力夸克的证据

Evidence for intrinsic charm quarks in the proton

论文作者

Ball, Richard D., Candido, Alessandro, Cruz-Martinez, Juan, Forte, Stefano, Giani, Tommaso, Hekhorn, Felix, Kudashkin, Kirill, Magni, Giacomo, Rojo, Juan

论文摘要

强力理论,量子染色体动力学,用夸克和胶子来描述质子。质子是两个上夸克的状态,一个由胶子束缚的夸克,但量子理论预测,此外,还有一对夸克 - 易夸克对数量。在高能碰撞中,质子揭示了质量的光和重夸克,它们的质量分别比质子的质量更小或更大。但是,目前尚不清楚重夸克是否也作为质子波函数的一部分而存在,该质子波函数由非扰动动力学决定,因此未知:所谓的内在重型夸克。很长一段时间以来,质子可能具有最轻的夸克(Charm Quark)的相当大的内在组成部分。在质子中建立内在魅力的无数努力尚无定论。在这里,我们通过基于机器学习和大型实验数据集的高精度来确定核子的夸克 - 杜林含量,从而提供了内在魅力的证据。我们将固有的魅力成分从高能辐射引起的魅力 - 安甘对。我们在3标准传输水平上建立了内在魅力的存在,并具有与模型预测的显着一致性的动量分布。我们通过与LHCB实验中的魅力喷射Z-Boson生产的最新数据进行比较,确认了这些发现。

The theory of the strong force, quantum chromodynamics, describes the proton in terms of quarks and gluons. The proton is a state of two up quarks and one down quark bound by gluons, but quantum theory predicts that in addition there is an infinite number of quark-antiquark pairs. Both light and heavy quarks, whose mass is respectively smaller or bigger than the mass of the proton, are revealed inside the proton in high-energy collisions. However, it is unclear whether heavy quarks also exist as a part of the proton wavefunction, which is determined by non-perturbative dynamics and accordingly unknown: so-called intrinsic heavy quarks. It has been argued for a long time that the proton could have a sizable intrinsic component of the lightest heavy quark, the charm quark. Innumerable efforts to establish intrinsic charm in the proton have remained inconclusive. Here we provide evidence for intrinsic charm by exploiting a high-precision determination of the quark-gluon content of the nucleon based on machine learning and a large experimental dataset. We disentangle the intrinsic charm component from charm-anticharm pairs arising from high-energy radiation. We establish the existence of intrinsic charm at the 3-standard-deviation level, with a momentum distribution in remarkable agreement with model predictions. We confirm these findings by comparing to very recent data on Z-boson production with charm jets from the LHCb experiment.

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