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Polarized Parton Distributions Measured at the HERMES Experiment

机译:在HERMES实验中测量的极化Parton分布

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摘要

The HERMES experiment at DESY, Germany was designed to carry out precision measurements of the proton spin structure using polarized deep-inelastic scattering. The experiment utilizes the 27.5 GeV electron or positron beam of the HERA accelerator which is longitudinally polarized at HERMES, in combination with a polarized internal gas target. For this work, data on longitudinally polarized hydrogen and deuterium targets were used to determine cross section asymmetries with respect to the alignment of the target and beam polarizations. Inclusive asymmetries on the proton and the deuteron, where only the scattered electronlpositron is detected, were measured with high precision. In semi-inclusive deep-inelastic scattering, at least one final-state hadron is detected in coincidence. Semi-inclusive asymmetries of pions on the proton and pion and kaon asymmetries on the deuteron were measured for the first time by the HERMES collaboration. The measured asymmetries include detector effects and effects of higher-order processes in quantum electrodynamics. A new unfolding procedure that takes into account the correlations between kinematic bins was implemented to correct for these effects. The polarized parton densities of the up, down, and sea flavours were obtained from the unfolded inclusive and semi-inclusive asymmetries in a probabilistic analysis based on leading-order quantum chromodynarnics. In the case of the up quark and the down quark, the polarized densities were determined to be positive and negative, respectively. The polarized densities of the sea flavours, decomposed for the first time into the densities of the anti-up, anti-down, and strange quarks, were found to be compatible with zero. Moments of the polarized parton densities were computed. The Bj~rken sum rule was verified and the total spin carried by the quark spins was determined to be (38.0 f 8.0) %. This latter result is larger than earlier measurements but still smaller than - 60 % predicted in relativistic models of the proton.
机译:德国DESY的HERMES实验旨在利用极化的深非弹性散射对质子自旋结构进行精确测量。该实验利用了在HERMES上纵向极化的HERA加速器的27.5 GeV电子束或正电子束,以及极化的内部气体靶。对于这项工作,使用关于纵向极化的氢和氘靶的数据来确定相对于靶和光束极化对准的横截面不对称性。质子和氘核上的包容性不对称(仅检测到散射的电子正电子)以高精度测量。在半包容性深非弹性散射中,同时检测到至少一个最终状态强子。 HERMES合作首次测量了质子上离子的半包容性不对称性以及氘核上的离子和钾离子的不对称性。测得的不对称性包括探测器效应和量子电动力学中的高阶过程效应。实施了一种新的展开程序,该程序考虑了运动仓之间的相关性,以纠正这些影响。上,下和海味的极化parton密度是通过基于前导量子色性神经元的概率分析中未折叠的包含和半包含的不对称性获得的。在上夸克和下夸克的情况下,极化密度分别确定为正和负。发现海味的极化密度首次分解为抗上,下和奇异夸克的密度,它们与零兼容。计算极化的Parton密度的矩。验证了伯杰求和规则,并且夸克自旋所携带的总自旋被确定为(38.0 f 8.0)%。后一个结果比以前的测量结果大,但仍小于在相对论质子模型中预测的-60%。

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    Wendland J?rgen;

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  • 年度 2003
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  • 原文格式 PDF
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