论文标题

LHC矢量玻色子在重离子碰撞中的影响对奇怪的PDFS的影响

Impact of LHC vector boson production in heavy ion collisions on strange PDFs

论文作者

Kusina, A., Ježo, T., Clark, D. B., Duwentäster, P., Godat, E., Hobbs, T. J., Kent, J., Klasen, M., Kovařík, K., Lyonnet, F., Muzakka, K. F., Olness, F. I., Schienbein, I., Yu, J. Y.

论文摘要

奇怪的Quark Parton分布函数(PDF)的提取提出了一个长期的难题。来自中微子核心深度弹性散射(DIS)实验的测量表明,与轻型海夸克相比,奇怪的夸克受到抑制,而最近对LHC的W/z玻色子产生的研究意味着在小x值下是一个较大的奇怪成分。由于质子中的Parton风味确定取决于核校正,例如从重目标迪斯特,LHC重离子测量值可以提供独特的观点,以帮助澄清这种情况。在这项调查中,我们扩展了NCTEQ15 NPDF,以研究LHC质子铅生产数据对风味分化和核校正的影响。该互补数据集为LHC W/Z质子分析和中微子核核DIS数据提供了新的见解。我们将这些新的NPDF识别为NCTEQ15WZ。我们的计算是使用基于C ++的NCTEQ代码(NCTEQ ++)的新实现来执行的,该实现使我们能够轻松地与Hoppet,Applrid和MCFM等外部程序进行连接。我们的结果表明,正如质子数据所暗示的那样,即使在拟合中适应了w/z数据的归一化时,小X核奇怪的海似乎也比以前预期的要大。将NCTEQ15分析扩展到包括LHC w/z数据包括我们迈向下一代NPDF时的重要步骤。

The extraction of the strange quark parton distribution function (PDF) poses a long-standing puzzle. Measurements from neutrino-nucleus deep inelastic scattering (DIS) experiments suggest the strange quark is suppressed compared to the light sea quarks, while recent studies of W/Z boson production at the LHC imply a larger strange component at small x values. As the parton flavor determination in the proton depends on nuclear corrections, e.g. from heavy-target DIS, LHC heavy ion measurements can provide a distinct perspective to help clarify this situation. In this investigation we extend the nCTEQ15 nPDFs to study the impact of the LHC proton-lead W/Z production data on both the flavor differentiation and nuclear corrections. This complementary data set provides new insights on both the LHC W/Z proton analyses and the neutrino-nucleus DIS data. We identify these new nPDFs as nCTEQ15WZ. Our calculations are performed using a new implementation of the nCTEQ code (nCTEQ++) based on C++ which enables us to easily interface to external programs such as HOPPET, APPLgrid and MCFM. Our results indicate that, as suggested by the proton data, the small x nuclear strange sea appears larger than previously expected, even when the normalization of the W/Z data is accommodated in the fit. Extending the nCTEQ15 analysis to include LHC W/Z data represents an important step as we advance toward the next generation of nPDFs.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源