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1.
The extended x-rescaling model is tested by taking into account the parton recombination effect to explain the nuclear effects including the EMC effect, nuclear Drell-Yan ratios and the nuclear gluon distributions in the 56Fe nucleus. The calculated results satisfactorily agree with the data of the EMC effect, nuclear Drell-Yan ratio and nuclear gluon distributions.  相似文献   

2.
核Drell–Yan过程中的能量丢失现象   总被引:1,自引:0,他引:1  
在考虑EMC效应的基础上进一步考虑了入射强子的能量丢失现象,用部分子演化模型预见核Drell-Yan过程,效果明显改进.  相似文献   

3.
用解析方法证明了部分子演化模型可为双重X重新标度模型提供物理基础,进而利用修正的Alteralli-Parisi方程描述小x区域的核遮蔽和反遮蔽效应,以改进部分子演化模型,使我们不必引入核遮蔽因子便可统一地描述EMC效应、核遮蔽和反遮蔽效应.最后,利用改进的部分子演化模型相当好地解释了核Drell-Yan过程的实验数据.  相似文献   

4.
In this paper we present a method which may be used to get the nuclear effect functions RυA(xt) and RsA(xt) for valence quark distributions and sea quark distributions in the light of the data of 1-A deep inelastic scattering and nuclear Drell-Yan process. Both the functions may be used to test the theoretical models explaining the nuclear effects. With nuclei Fe, Ca and C as examples, the results are shown.  相似文献   

5.
在不同能量下, 利用核束缚能对虚光子四动量的平方项进行修正, 分别计算了Sn核碰撞中核束缚能对反应截面中湮灭项和康普顿散射项及K因子的影响。 结果表明, 核束缚能在小x区域对反应截面中湮灭项和康普顿散射项及K因子的影响明显, 并且能量越低这种影响越显著, 随着x2增大影响逐渐消失。 We made a revision of square of virtual photon four momentum by means of using nuclear bin ding energy formula in different energy, and we also made an accurate calculation for the effect of nuclear binding energy on K factor and Compton term and annihilate term in the Drell Yan process of the Sn Sn collision. The outcome indicates that the effect of nuclear binding energy on the annihilate term and the Compton term is marked in little x region and the effect will become more obvious with decrease of the energy and come to disappear with increase of the x.  相似文献   

6.
王宏民  孙献静  侯召宇 《中国物理 C》2007,31(11):1040-1044
核遮蔽和能量损失效应是p-A碰撞中两种重要的初态核效应. 本文利用从轻子-原子核深度非弹性散射实验数据中抽取的束缚核子的部分子分布函数, 在色弦模型中研究了Drell-Yan双轻子对产生过程中的能量损失效应. 通过对FNAL E772和E866实验数据的χ2分析, 得到夸克在冷核中的能量损失率为-dE/dz=2.06GeV/fm. 这和该模型理论预言的结果(-dE/dz~2GeV/fm)一致. 通过将理论计算结果与实验数据进行比较, 发现考虑到能量损失后能很好的解释实验现象.  相似文献   

7.
提出了一个由轻子-核深度非弹性散射和核Drell-Yan过程的实验数据得到价夸克分布和海夸克分布的核效应函数RvA(xt)和RsA(xt)的方法. 由这两个函数可以检验解释核效应的理论模型. 以铁核为例求出了RvFe(xt)和Rs(Fe)(xt).  相似文献   

8.
We modify the square of virtual photon four-momentum by using nuclear binding energy formula, and calculate the effect of nuclear binding energy to K factor and Compton subprocess and annihilate subprocess in A-A collision Drell-Yan process. The outcome indicates that the effect of nuclear binding energy to K factor is obvious in little x region and it would disappear gradually as x increases.  相似文献   

9.
在高能核–核碰撞Drell-Yan过程考虑湮没项和康普顿散射项的基础上,利用双重Q2重标度模型,分别计算了碳、钙、铁、锡与其自身的核–核碰撞.结果表明,对于不同的x1值,K因子随x2的变化很不相同;同时,K因子变化的幅度是随核素A不同而发生微弱变化的,在特定的x1,x2取值有限范围内它不能近似取为常数.计算结果与实验的对比是对所用模型及QCD理论适用性的一种检验.  相似文献   

10.
Some aspects of medium energy (∼ 150 MeV to 1 GeV) proton and pion scattering theory from complex nuclei are reviewed with emphasis on inelastic scattering as a tool to extract nuclear structure information.  相似文献   

11.
The energy loss effect in nuclear matter is another nuclear effect apart from the nuclear effects on the parton distribution as in deep inelastic scattering process. The quark energy loss can be measured best by the nuclear dependence of the high energy nuclear Drell-Yan process. By means of three kinds of quark energy loss parameterizations given in literature and the nuclear parton distribution extracted only with lepton-nucleus deep inelastic scattering experimental data, measured Drell-Yan production cross sections are analyzed for 800 GeV proton incident on a variety of nuclear targets from FNAL E866. It is shown that our results with considering the energy loss effect are much different from those of the FNAL E866, who analyzes the experimental data with the nuclear parton distribution functions obtained by using the deep inelastic IA collisions and pA nuclear Drell-Yan data. Considering the existence of energy loss effect in Drell-Yan lepton pairs production, we suggest that the extraction of nuclear parton distribution functions should not include Drell-Yan experimental data.  相似文献   

12.
The energy loss effect in nuclear matter is another nuclear effect apart from the nuclear effects on the parton distribution as in deep inelastic scattering process. The quark energy loss can be measured best by the nuclear dependence of the high energy nuclear Dre11-Yan process. By means of three kinds of quark energy loss parameterizations given in literature and the nuclear parton distribution extracted only with lepton-nucleus deep inelastic scattering experimental data, measured Dre11-Yan production cross sections are analyzed for 800 GeV proton incident on a variety of nuclear targets from FNAL E866. It is shown that our results with considering the energy loss effect are much different from those of the FNAL E866, who analyzes the experimental data with the nuclear parton distribution functions obtained by using the deep inelastic IA collisions and pA nuclear Drell-Yan data. Considering the existence of energy loss effect in Drell-Yan lepton pairs production, we suggest that the extraction of nuclear parton distribution functions shoul““““d not include Dre11-Yan experimental data.  相似文献   

13.
在非常数性K因子的情况下,根据核Drell-Yan过程的高能强子h同原子核A碰撞和高能轻子l同原子核A深度非弹性碰撞的实验数据,在考虑QCD非微扰效应对深度非弹性散射部分子分布的影响及Drell-Yan过程中的能量丢失效应,计算确定价夸克分布和海夸克分布核效应函数RAυ(x2),RAS(x2)的变化,深化了对原子核内夸克分布受核效应影响的认识  相似文献   

14.
The double Q2-rescaling model is used to compute the change of K-factor with xA2 when the nucleus carbon-nucleus carbon collision occurs at different values of xAl, where x are momentum fraction variables. In the calculation, the contributions of annihilations and Compton scattering have been considered for the Drell-Yan process. The calculated results show that the plots of K-factor versus XA2 are very different for different values of xAl. They are also compared with experimental data, which provides a test to the model of nuclear effect and the QCD theory itself  相似文献   

15.
利用Glauber模型以及DGLAP方程下的核内核子的部分子分布函数, 在次领头阶QCD下计算了Drell-Yan过程中的能量损失效应, 计算表明QCD修正并不能改善理论结果与试验结果的符合, 尤其是p-W与p-Be以x1为变量的微分截面比. 原因是所用的核内核子部分子的分布函数是以领头阶近似为基础并通过演化方程得到的. 于是利用在次领头阶微扰QCD下得到的核遮蔽效应核内核子的部分子分布函数重新计算了次领头阶QCD修正对Drell-Yan过程能量损失的贡献. 计算结果表明康普顿散射过程与湮没过程中应该有更多的能量损失.  相似文献   

16.
提出了改进的核密度模型,用唯象的方法找到了束缚核子内价夸克和海夸克的核效应的参数公式,其中利用了核密度与原子核的平均结合能之间的联系. 利用该模型所得到的束缚核子内部分子分布函数,对强子与核的Drell-Yan过程的核效应给出了满意的解释, 深化了对原子核内夸克分布受核效应影响的认识. 关键词: 核密度模型 核效应 强子-核Drell-Yan过程  相似文献   

17.
Having studied the initial state energy loss versus nuclear shadowing for the Drell-Yan dimuon pair production in the color string model, the inhomogeneous shadowing effect is considered in this paper. We find that the inhomogeneous shadowing effect does amend the rate of energy loss per unit path length, -dE/dz. Finally, the theoretical results for the Drell-Yan differential cross-section ratios are compared with the E772 and E866 data. It is found that the theoretical results are in good agreement with the experimental data.  相似文献   

18.
在本实验中,引用了一个新的特征量,相对信息熵R,研究了能量为14.6,60,200AGeV的氧离子和200AGeV的硫离子诱发核反应的产生粒子多重数分布.在目前的能区中,R近似地能量无关.R对快度窗口大小依赖的饱和性,揭示了中心区的熵集中产生.实验结果与Lund模型的FRITIOF模拟计算的预言一致.  相似文献   

19.
We examine deep inelastic scattering using methods which have been successfully applied to study inclusive scattering of GeV electrons by nuclei. We find that the consistent inclusion of the binding effects allows to describe much better the data on nuclear matter to deuteron cross section ratios in the region of large x where binding fully accounts for the deviation of the cross section ratio from one.  相似文献   

20.
A simple statistical model in terms of light-front kinematic variables is used to explain the nuclear EMC effect in the range x[0.2,0.7], which was constructed by us previously to calculate the parton distribution functions (PDFs) of the nucleon. Here, we treat the temperature T as a parameter of the atomic number A, and get reasonable results in agreement with the experimental data. Our results show that the larger A, the lower T thus the bigger volume V, and these features are consistent with other models. Moreover, we give the predictions of the quark distribution ratios, i.e., qA(x)/qD(x), , and sA(x)/sD(x), and also the gluon ratio gA(x)/gD(x) for iron as an example. The predictions are different from those by other models, thus experiments aiming at measuring the parton ratios of anti-quarks, strange quarks, and gluons can provide a discrimination of different models.  相似文献   

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