论文标题

新颖的夸克物理现象

Novel Heavy-Quark Physics Phenomena

论文作者

Brodsky, S. J., Lykasov, G. I., Lipatov, A. V., Smiesko, J.

论文摘要

我们回顾了当前对核子中重夸克帕顿分布的理解及其对高能量下的深度非弹性散射,对撞机物理和其他过程的影响。重量夸克Parton分布函数的确定对于分析LHC能量的硬过程(包括远期速度高$ x_ \ mathrm {f} $域)特别重要。在非扰动物理学中审查了与核子价夸克的多重连接的“内在”重夸克的贡献,该物理提供了有关QCD中HADRON的基本结构的新信息。最近,从质子的$ g_ \ mathrm {e}^p(q^2)$形式的QCD晶格量规理论计算中,获得了质子本征质体的非固有魅力不对称的新预测。这种形式仅由非价夸克和反夸克产生,如果它们在质子的特征态中有不同的贡献。该结果以及从光前全息QCD(LFHQCD)的HADRONIC结构函数形式的独家连接和分析约束,可以预测,在Proton结构中,由$ X $ cy tynamisic protions Charmicic protistical protistical protistical protionce tynamisic protigation tynamisic protiment tynamisic protiment tynamisic protiment tynamisic protistical protistical protisticic bar {c) - \ bar {c) - \ bar {c}(c) - \ bar {c}(x,q)。 $ \ sqrt {s} = 8 $ tev在$ pp $碰撞中相关的提示光子和魅力Quark Jets相关生产的最新Atlas数据提供了对非扰动固有魅力和LGTH预测的测试的新约束。我们还专注于对对PDF的内在重型贡献具有高灵敏度的其他实验性可观察物。

We review the current understanding of heavy quark parton distributions in nucleons and their impact on deep inelastic scattering, collider physics, and other processes at high energies. The determination of the heavy-quark parton distribution functions is particularly significant for the analysis of hard processes at LHC energies, including the forward rapidity high $x_\mathrm{F}$ domain. The contribution of "intrinsic" heavy quarks, which are multiply connected to the valence quarks of nucleons, is reviewed within non-perturbative physics which provides new information on the fundamental structure of hadrons in QCD. A new prediction for the non-perturbative intrinsic charm-anticharm asymmetry of the proton eigenstate has recently been obtained from a QCD lattice gauge theory calculation of the proton's $G_\mathrm{E}^p(Q^2)$ form factor. This form factor only arises from non-valence quarks and anti-quarks if they have different contributions in the proton's eigenstate. This result, together with the exclusive and inclusive connection and analytic constraints on the form of hadronic structure functions from Light-Front Holographic QCD (LFHQCD) predicts a significant non-perturbative $c(x,Q) - \bar{c}(x,Q)$ asymmetry in the proton structure function at high $x$, consistent with the dynamics predicted by intrinsic charm models. Recent ATLAS data on the associated production of prompt photons and charm-quark jets in $pp$ collisions at $\sqrt{s} = 8$ TeV has provided new constraints on non-perturbative intrinsic charm and tests of the LGTH predictions. We also focus on other experimental observables which have high sensitivity to the intrinsic heavy contributions to PDFs.

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