论文标题

Boer-Mulders功能的新研究:对夸克和强子横向动量的影响

New study of the Boer-Mulders function: Implications for the quark and hadron transverse momenta

论文作者

Christova, E., Kotlorz, D., Leader, E.

论文摘要

在一系列论文中,提取了给定夸克风味的Boer-Mulders功能:(i)使用简化的,但理论上不一致地从半包含的深层不弹性散射的数据中提取了它与每个Quark风味和(ii)DRELL-YAN反应的数据成正比的,假设它与Sesiver的功能成正比。在较早的论文中,使用$ \ langle \ cosCoscome \ cosCoste_h \ rangle $和$ \ langle \ cos 2 ϕ_h \ rangle $ asmmetries的半无弹性指南针Deuteron的数据$ q_v = u_v + d_v $使用少量的型号依赖性假设,并在(i)中发现了与分析有重大分歧。在本文中,我们对半包含深的非弹性散射反应进行了更完整的分析,包括讨论更高的扭曲和相互作用依赖性术语,并与从drell-yan反应的数据中提取的Boer-Mulders函数进行了比较。我们确认BM功能与Sivers功能的比例关系,对于每个夸克风味,都会造成严重失败,但是如果应用于非词性Valence-Quark组合($ Q_V $),则发现它可以很好地保持。我们还与Drell-YAN分析的结果相吻合。此外,我们获得了有关细胞核中夸克横向动量密度以及夸克碎片中强子横向动量依赖性的有趣信息。

In series of papers the Boer-Mulders function for a given quark flavour has been extracted: (i) from data on semi-inclusive deep inelastic scattering, using the simplifying, but theoretically inconsistent, assumption that it is proportional to the Sivers function for each quark flavour and (ii) from data on Drell-Yan reactions. In earlier papers, using the semi-inclusive deep inelastic COMPASS deuteron data on the $\langle\cosϕ_h\rangle$ and $\langle\cos 2 ϕ_h\rangle$ asymmetries, we extracted the collinear $x_{_{\!B}}$ dependence of the Boer-Mulders function for the sum of the valence quarks $Q_V=u_V + d_V$ using a small number of model dependent assumptions and found a significant disagreement with the analysis in (i). In the present paper, we provide a more complete analysis of the semi-inclusive deep inelastic scattering reaction, including a discussion of higher twist and interaction-dependent terms, and also a comparison with the Boer-Mulders function extracted from data on the Drell-Yan reaction. We confirm that the proportionality relation of the BM function to the Sivers function, for each quark flavour, fails badly, but find that it holds rather well if applied to the nonsinglet valence-quark combination, $Q_V$. We also find good agreement with the results of the Drell-Yan analysis. Furthermore, we obtain interesting information on the quark transverse momentum densities in the nucleon and on the hadron transverse momentum dependence in quark fragmentation.

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