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1.
The differential gluon structure function of the proton, ?(x, Q 2), introduced by Fadin, Kuraev, and Lipatov in 1975 is extensively used in small-x QCD. We report here the first determination of ?(x, Q 2) from experimental data on the small-x proton structure function F 2p (x, Q 2). We give convenient parametrizations for ?(x, Q 2) based partly on the available DGLAP evolution fits (GRV, CTEQ, and MRS) to parton distribution functions and on realistic extrapolations into the soft region. We discuss the impact of soft gluons on various observables. The x dependence of the so-determined ?(x, Q 2) varies strongly with Q 2 and does not exhibit simple Regge properties. Nonetheless, the hard-to-soft diffusion is found to give rise to a viable approximation of the proton structure function F 2p (x, Q 2) by the soft and hard Regge components with intercepts Δsoft=0 and Δhard ~ 0.4.  相似文献   

2.
M. Glück  E. Reya 《Nuclear Physics B》1979,156(3):456-464
It is demonstrated that recent measurements of ∫10F2(x, Q2)dx eliminate already all strong interaction field theories except QCD. A detailed study of scaling violations of F2(x, Q2) in QCD shows their insensitivity to the gluon content of the hadron at presently measured values of Q2.  相似文献   

3.
A measurement is made of the cross section for the process epeXY in deep-inelastic scattering with the H1 detector at HERA. The cross section is presented in terms of a differential structure function F 2 D(3) (x P, β,Q 2) of the proton over the kinematic range 4.5 < Q 2 < 75 GeV2. The dependence of F 2 D(3) on x P is found to vary with β, demonstrating that a factorisation of F 2 D(3) with a single diffractive flux independent of β and Q 2 is not tenable. An interpretation in which a leading diffractive exchange and a subleading reggeon contribute to F 2 D(3) reproduces well the x P dependence of F 2 D(3) with values for the pomeron and subleading reggeon intercepts of αP (0) = 1.203±0.020(stat.)±0.013(sys.) -0.035 +0.030 (model) and α R (0) = 0.50 ± 0.11(stat.) ± 0.11(sys.) -0.10 +0.09 (model), respectively. A fit is performed of the data using a QCD motivated model, in which parton distributions are assigned to the leading and subleading exchanges. In this model, the majority of the momentum of the pomeron must be carried by gluons in order for the data to be well described.  相似文献   

4.
The BFKL and the unified angular-ordered equations are solved to determine the gluon distribution at smallx. The impact of kinematic constraints is investigated. Predictions are made for observables sensitive to the gluon at smallx. In particular comparison is made with measurements at the HERA electron-proton collider of the proton structure functionF 2(x, Q 2) as a function of lnQ 2, the charm componentF c 2 (X, Q 2) and diffractiveJ/Ψ photoproduction.  相似文献   

5.
The BFKL and the unified angular-ordered equations are solved to determine the gluon distribution at smallx. The impact of kinematic constraints is investigated. Predictions are made for observables sensitive to the gluon at smallx. In particular comparison is made with measurements at the HERA electron-proton collider of the proton structure functionF 2(x, Q 2) as a function of lnQ 2, the charm componentF c 2 (X, Q 2) and diffractiveJ/?? photoproduction.  相似文献   

6.
《Physics letters. [Part B]》2001,504(3):235-240
We calculate twist-4 coefficient functions for the deep inelastic structure function F2(x,Q2) associated to 4-gluon operator matrix elements for general values of the Bjorken variable x and study the numerical effect on the slope ∂F2(x,Q2)/logQ2. It is shown that these contributions diminish the strongly rising twist-2 terms towards small values of x.  相似文献   

7.
Abhijeet Das  A Saikia 《Pramana》1999,53(4):701-706
We obtain a relation between the longitudinal structure function F L(x, Q 2), F 2(x, Q 2) and G(x, Q 2) at small x, using the formalism recently reported by one of the authors [2]. We also obtain a relation between F L(x, Q 2), F 2(x, Q 2) and its slope (dF 2(x, Q 2))/(dlnQ 2). This provides us with the determination of the longitudinal structure function F L(x, Q 2) from F 2(x, Q 2) data and hence extract the gluon distribution G(x, Q 2).  相似文献   

8.
The gluon and quark distributions of the nucleon are evaluated using the Altarelli-Parisi equations with the input distributions atQ 0 2 =5 GeV2 for seaquarks and gluons modified by the factor (ax ?0.5+b). The new parametrization is constrained to satisfy the momentum sum rule and after backward evolution (fromQ 0 2 =5 GeV2 toQ 2=1 GeV2) it is also constrained to give approximately 1/x behaviour of the sea-quark and gluon distributions in the limited region of smallx (10?3<x<10?2 or so). The theoretical predictions relevant for HERA for structure functionsF 2(x, Q 2) andF L (x, Q 2) in the region of very smallx(10?4<x<10?2) and largeQ 2 and for the cross-sectionσ* pΨX) are presented. Distributions of heavy quarks (c,b,t) are also discussed.  相似文献   

9.
We analyze the perturbative and parametric stability of the QCD predictions for the Callan–Gross ratio, R(x,Q 2)=F L /F T , in heavy-quark leptoproduction. We consider the radiative corrections to the dominant photon–gluon fusion mechanism. In various kinematic regions, the following contributions are investigated: exact NLO results at low and moderate Q 2m 2, asymptotic NLO predictions at high Q 2m 2, and both NLO and NNLO soft-gluon (or threshold) corrections at large Bjorken variable x. Our analysis shows that large radiative corrections to the structure functions F T (x,Q 2) and F L (x,Q 2) cancel each other in their ratio R(x,Q 2) with good accuracy. As a result, the NLO contributions to the Callan–Gross ratio are less than 10% in a wide region of the variables x and Q 2. We provide compact LO predictions for R(x,Q 2) in the case of low x 1. A simple formula connecting the high-energy behavior of the Callan–Gross ratio and low-x asymptotics of the gluon density is derived. It is shown that the obtained hadron-level predictions for R(x→0,Q 2) are stable under the DGLAP evolution of the gluon distribution function. Our analytic results simplify the extraction of the structure functions F 2 c (x,Q 2) and F 2 b (x,Q 2) from measurements of the corresponding reduced cross sections, in particular at DESY HERA.  相似文献   

10.
At HERA energies the smallx region (x?10?2) can be explored atQ 2 values large enough that leading twist QCD calculations are valid. We show how measurement of the longitudinal structure function,F L (x,Q 2), can lead to accurate measurement of the gluon structure function at such smallx values. Experimental systematic errors are discussed fully and requirements for the measurement outlined. We conclude that it should be possible to distinguish between the widely varying gluon distributions which are currently allowed.  相似文献   

11.
P N Pandita 《Pramana》1978,10(6):577-587
We derive sum rules for the structure functionV(x) for the ‘three-photon’ processe ±+pe ±+γ+X which can distinguish between various colour models below colour threshold, independently of the quark and gluon distributions. A careful study of the sum rule forV(x) in the broken colour gauge theory model can in principle be used to determine the colour gluon mass. Invoking the specific assumptions of the dominance ofp-type quarks and neglecting the sea of quark-antiquark pairs, we also obtain bounds forV(x) in terms ofvW 2 (x) which can distinguish between various colour models below colour threshold.  相似文献   

12.
Using recent data on deep inelastic lepton-nucleon scattering an attempt is made to extract the gluon distributionG(x, Q 2=4 GeV2) from the observed scaling violations of structure functions. The accuracy of the data allows only for a rough determination of the gluon distribution. In particular it is found that a hard gluon distributionis consistent with present measurements. Implications of the hard gluon distribution for charm production in the gluon fusion model and for the perturbative contributions to σ L T are further discussed. Finally, analytic parametrizations of the QCDx- andQ 2-dependence of quark and gluon distributions are presented facilitating further possible applications.  相似文献   

13.
Total neutrino and antineutrino cross sections in the energy range 15 to 150 GeV, and the nucleon structure functions, F2(x, Q2) and xF3(x, Q2) in the Q2 range 0.5 to 50 (GeV/c)2 have been measured using a data sample of 3000 neutrino and 3800 antineutrino events. The structure functions show a weak Q2 dependence at different x values.  相似文献   

14.
A detailed analysis is presented of the diffractive deep-inelastic scattering process ep→eXY, where Y is a proton or a low mass proton excitation carrying a fraction 1-xIP>0.95 of the incident proton longitudinal momentum and the squared four-momentum transfer at the proton vertex satisfies |t|<1 GeV2. Using data taken by the H1 experiment, the cross section is measured for photon virtualities in the range 3.5≤Q2≤1600 GeV2, triple differentially in xIP, Q2 and β=x/xIP, where x is the Bjorken scaling variable. At low xIP, the data are consistent with a factorisable xIP dependence, which can be described by the exchange of an effective pomeron trajectory with intercept αIP(0)=1.118±0.008(exp.)+0.029 -0.010(model). Diffractive parton distribution functions and their uncertainties are determined from a next-to-leading order DGLAP QCD analysis of the Q2 and β dependences of the cross section. The resulting gluon distribution carries an integrated fraction of around 70% of the exchanged momentum in the Q2 range studied. Total and differential cross sections are also measured for the diffractive charged current process e+p→ν̄eXY and are found to be well described by predictions based on the diffractive parton distributions. The ratio of the diffractive to the inclusive neutral current ep cross sections is studied. Over most of the kinematic range, this ratio shows no significant dependence on Q2 at fixed xIP and x or on x at fixed Q2 and β.  相似文献   

15.
《Nuclear Physics B》1995,439(3):471-502
A measurement of the proton structure function F2(x, Q2) is reported for momentum transfers squared Q2 between 4.5 GeV2 and 1600 GeV2 and for Bjorken x between 1.8 × 10−14 and 0.13 using data collected by the HERA experiment H1 in 1993. It is observed that F2 increases significantly with decreasing x, confirming our previous measurement made with one tenth of the data available in this analysis. The Q2 dependence is approximately logarithmic over the full kinematic range covered. The subsample of deep inelastic events with a large pseudo-rapidity gap in the hadronic energy flow close to the proton remnant is used to measure the “diffractive” contribution to F2.  相似文献   

16.
The QCD factorization theorem for diffractive processes in DIS is used to derive formulae for the leading twist contribution to the nuclear shadowing of parton distributions in the low thickness limit (due to the coherent projectile (photon) interactions with two nucleons). Based on the current analyzes of diffraction at HERA we find that the average strength of the interactions which govern diffraction in the gluon sector at x≤ 10−3, Q 0= 2 GeV is ∼50mb. This is three times larger than in the quark sector and suggests that applicability of DGLAP approximation requires significantly larger Q 0 in the gluon sector. We use this information on diffraction to estimate the higher order shadowing terms due to the photon interactions with N≥ 3 nucleons which are important for the scattering of heavy nuclei and to calculate nuclear shadowing and Q 2 dependence of gluon densities. For the heavy nuclei the amount of the gluon shadowing: G A(x,Q 0 2) /AG N(x,Q 0 2)|x ≤ 10−3∼ 0.25–0.4 is sensitive to the probability of the small size configurations within wave function of the gluon “partonometer” at the Q 0 scale. At this scale for A∼ 200 the nonperturbative contribution to the gluon density is reduced by a factor of 4–5 at x≤ 10−3 unmasking PQCD physics in the gluon distribution of heavy nuclei. We point out that the shadowing of this magnitude would strongly modify the first stage of the heavy ion collisions at the LHC energies, and also would lead to large color opacity effects in eA collisions at HERA energies. In particular, the leading twist contribution to the cross section of the coherent J/ψ production off A≥ 12 nuclei at s −2≥ 70 GeV is strongly reduced as compared to the naive color transparency expectations. The Gribov black body limit for F 2A(x,Q 2) is extended to the case of the gluon distributions in nuclei and shown to be relevant for the HERA kinematics of eA collisions. Properties of the final states are also briefly discussed. Received: 12 March 1999  相似文献   

17.
Assuming that the sea quark distribution vanishes for x > 0.3, we analyse the F2Fe(x, Q2) and F2D(x, Q2) structure functions measured by the European Muon Collaboration in the framework of a thermodynamical model of the valence quarks. The experimental ratio F2Fe(x)F2D(x) is well reproduced over the whole x range by the ratio of two valence quark distributions at different temperatures T and confinement volumes V. We obtain TD?TFe≈3 MeV and VFeVD ≈ 1.3.  相似文献   

18.
We derive the Leading-Order (LO) master equation to extract the polarized gluon distribution G(x,Q 2)=xδg(x,Q 2) from polarized proton structure function, gp1(x,Q2)g^{p}_{1}(x,Q^{2}). By using a Laplace-transform technique, we solve the master equation and derive the polarized gluon distribution inside the proton. The test of accuracy which is based in our calculations on two different methods, confirms that we achieve to the correct solution for the polarized gluon distribution. To determine the polarized gluon distribution xδg(x,Q 2) more accurately, we only need to have more experimental data on the polarized structure functions, g1p(x,Q2)g_{1}^{p}(x,Q^{2}). Our result for polarized gluon distribution is in good agreement with some phenomenological models.  相似文献   

19.
I present a theoretical discussion of the uncertainties related to the QCD analysis of the proton structure function F 2(x,Q 2) at small x. The role played by the ‘unphysical’ gluon density is pointed out. It is shown how the study of more observables can reduce the theoretical uncertainty and, in particular, an alternative method of analysis, based on the introduction of physical anomalous dimensions, is suggested.  相似文献   

20.
In this paper we obtain the heavy-quark contribution to the longitudinal structure functions F L (x, Q 2). Since F L structure functions contains rather large heavy flavor contributions in the small x region, we need to use the massive operator matrix elements, which contribute to the heavy flavor Wilson coefficients in unpolarized deeply inelastic scattering in the region Q 2?>?>?m 2. The method of QCD analysis, based on the Jacobi polynomials method, is also described. Our results for longitudinal structure function are in good agreement with the available experimental data.  相似文献   

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