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Using hadron-in-jet data in a global analysis of D* fragmentation functions

机译:在全局分析D *碎片功能的全局分析中使用强子内数据

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摘要

We present a novel global QCD analysis of charged D*-meson fragmentation functions at next-toleading order accuracy. This is achieved by making use of the available data for single-inclusive D*-meson production in electron-positron annihilation, hadron-hadron collisions, and, for the first time, in-jet fragmentation in proton-proton scattering. It is shown how to include all relevant processes efficiently and without approximations within the Mellin moment technique, specifically for the in-jet fragmentation cross section. The presented technical framework is generic and can be straightforwardly applied to future analyses of fragmentation functions for other hadron species, as soon as more in-jet fragmentation data become available. We choose to work within the zero mass variable flavor number scheme which is applicable for sufficiently high energies and transverse momenta. The obtained optimum set of parton-to- D* fragmentation functions is accompanied by Hessian uncertainty sets which allow one to propagate hadronization uncertainties to other processes of interest.
机译:我们在下一个托架订单精度下提出了一种新的全球QCD分析,以下列定量准确度。这是通过利用用于电子正电子湮灭,HATRON-HOTRON碰撞的单层D * -meson生产的可用数据来实现的,并且是第一次在质子 - 质子散射中喷射碎片。图3示出了如何有效地包括所有相关过程,并且在梅林片刻技术内没有近似,具体用于进出喷射碎片横截面。一旦更多的进入进入碎片数据可用,所呈现的技术框架是通用的,并且可以直接应用于其他强子种类的碎片功能的分段函数的分析。我们选择在零质量变量风味方案中工作,适用于足够高的能量和横向动量。获得的最佳部分的Parton-to-d *碎片函数伴随着Hessian不确定性集,允许一个人传播到其他感兴趣的其他过程中的不确定性。

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  • 来源
    《Physical Review D》 |2017年第4期|034028.1-034028.16|共16页
  • 作者单位

    Lancaster-Manchester-Sheffield Consortium for Fundamental Physics School of Physics and Astronomy University of Manchester Manchester M13 9PL United Kingdom;

    Institute for Theoretical Physics University of Tuebingen Auf der Morgenstelle 14 72076 Tuebingen Germany;

    Institute for Theoretical Physics University of Tuebingen Auf der Morgenstelle 14 72076 Tuebingen Germany;

    Nuclear Science Division Lawrence Berkeley National Laboratory Berkeley California 94720 USA;

    Theoretical Division Los Alamos National Laboratory Los Alamos New Mexico 87545 USA;

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