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Boer-Mulders Functions -- A Test of the Assumptions Made in Their Determination

机译:Boer-Mulders功能 - 对他们决心所取得的假设的测试

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At present, the Boer-Mulders function for a given quark flavour is extracted from data on semi-inclusive deep inelastic scattering using the simplifying assumption that it is proportional to the Sivers function for that flavour. In a recent paper we suggested that the consistency of this assumption could be tested using information on so-called difference asymmetries i.e. the difference between the asymmetries in the production of particles and their anti-particles. Here, using the COMPASS deuteron data on the (cos Φ_h>, (cos 2Φ_h) and Sivers difference asymmetries, we carry out two independent consistency tests of the assumption of proportionality, but now applied to the sum of the valence-quark contributions. Our analysis shows that such an assumption is compatible with the data. However, we show that the proportionality assumptions made in the existing parametrizations of the Boer-Mulders functions are not compatible with our analysis, which suggests that the published results for the Boer-Mulders functions for individual flavours are unreliable. We have also determined the kinematical Cahn contribution, both directly from a fit to the data (as far as we know for the first time) and from a calculation.
机译:目前,使用简化假设从关于该味道的Siver函数成比例的Semiumicive Deep Inelastic散射的数据中提取给定夸克风味的Boer-Mulders功能。在最近的一篇论文中,我们建议使用关于所谓的差异不对称的信息来测试这种假设的一致性即,在颗粒的生产中的不对称和它们的抗粒子之间的差异。在这里,在(coSφ_h>,(cos2φ_h)和siver差不对称上使用指南针氘代数据,我们对比例的假设进行了两个独立的一致性测试,但现在适用于价值夸克贡献的总和。我们的分析表明,这种假设与数据兼容。然而,我们表明,在Boer-Mulders函数的现有参数化中所做的比例假设与我们的分析不兼容,这表明发布的Poer-Mulders函数的发布结果对于个人口味是不可靠的。我们还确定了基因CAHN贡献,无论是直接从拟合到数据(据我们第一次知道)和计算。

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