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首页> 外文期刊>European Physical Journal Plus >Study of charged particle production in U-U collisions in the wounded quark model
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Study of charged particle production in U-U collisions in the wounded quark model

机译:伤口夸克模型U-U碰撞中的带电粒子产生的研究

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Recently, there has been a growing interest in the study of deformed uranium-uranium (U-U) collisions in its various geometrical configurations due to their usefulness in understanding the different aspects of quantum chromodynamics (QCD). In this paper we have studied the particle production in deformed U-U collisions at root sNN = 193 GeV using the modified wounded quark model (WQM). At first, we have shown the variation of quark-nucleus inelastic scattering cross-section (sigma(in)(qA)) with respect to centralities for various geometrical orientations of U-U collisions in WQM. After that we have calculated the pseudorapidity density (dn(ch)/d eta) within WQM using a two-component prescription. Further we have calculated the transverse energy density distribution (d(ET)/d(eta)) along with the ratio of transverse energy to charged hadron multiplicity (E-T/N-ch) for U-U collisions and compared them with the corresponding experimental data. We have shown the scaling behavior of dn(ch)/d eta and dE(T)/d eta for different initial geometry of U-U collision with respect to p-p data at root sNN = 200 GeV. Furthermore we have shown the Bjorken energy density achieved in U-U collisions for various configurations and compared them with experimental data of Au-Au at 200 GeV. We observe that the present model suitably describes the experimental data for minimum bias geometrical configuration of U-U collisions. An estimate for various observables in different initial geometries of U-U collisions is also presented which will be tested in future by experimental data.
机译:最近,由于它们在理解量子色动力学(QCD)的不同方面,对其各种几何配置中的变形铀 - 铀(U-U)碰撞的研究甚至存在令人兴趣。在本文中,我们研究了通过改进的伤口夸克模型(WQM)在Root SNN = 193 GEV的变形U-U碰撞中的颗粒生产。首先,我们已经示出了关于WQM中的U-U碰撞的各种几何取向的中心地区的夸克 - 核缺陷散射截面(Sigma(QA))的变化。之后,我们已经使用双组分处方计算了WQM内的伪型密度(DN(CH)/ D ETA)。此外,我们已经计算了横向能量密度分布(D(等)/ d(ETA))以及横向能量与U-U冲突的带电的带电的比率,并与相应的实验数据进行比较。我们已经示出了DN(CH)/ D ETA和DE(T)/ D ETA的缩放行为,用于对Root SNN = 200 GEV处的P-P数据不同的U-U冲突的不同初始几何形状。此外,我们已经示出了在U-U碰撞中实现的Bjorken能量密度,用于各种配置,并将其与200 GEV的Au-Au的实验数据进行比较。我们观察到本模型适当地描述了U-U冲突的最小偏置几何配置的实验数据。还介绍了U-U冲突的不同初始几何形状中各种可观察到的估计,其将来将通过实验数据测试。

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