Quantum-chromodynamic gluon contributions to large-p T reactions

Quantum-chromodynamic gluon contributions to large-p T reactions
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量子色动力胶子对大 p T 反应的贡献

DOI:
10.1103/physrevd.17.196
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发表时间:
1978
期刊:
影响因子:
5
通讯作者:
D. Sivers
D. Sivers
中科院分区:
物理与天体物理2区
文献类型:
--
作者:
R. T. Cutler;D. Sivers

文献摘要

被引文献

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We use a calculation based on the lowest order in the perturbation series for quantum chromodynamics to obtain an estimate for the contribution of hard-scattering processes involving vector gluons to the production of hadrons at large transverse momentum. Some simple models for the distribution of gluons in a proton and for the distribution of hadrons within a hard gluon jet are presented and used to calculate the process $\mathrm{pp}\ensuremath{\rightarrow}{\ensuremath{\pi}}^{0}X$. At $\sqrt{s}=53$ GeV we find that the contribution of the subprocess $\mathrm{qV}\ensuremath{\rightarrow}\mathrm{qV}$ is comparable to that of $\mathrm{qq}\ensuremath{\rightarrow}\mathrm{qq}$. The resulting cross sections are rather close to the CERN ISR data in magnitude. It is possible that small corrections arising, for example, from higher-order terms in the perturbation expansion might lead to a detailed fit to these data. At higher energies, such as those to be obtained in proposed new experimental facilities, our results indicate that the mechanisms $\mathrm{VV}\ensuremath{\rightarrow}\mathrm{VV}$ and $\mathrm{qV}\ensuremath{\rightarrow}\mathrm{qV}$ may dominate over $\mathrm{qq}\ensuremath{\rightarrow}\mathrm{qq}$ in much of the accessible kinematic regime. We briefly consider some experimental consequences of possible gluon dominance.
We use a calculation based on the lowest order in the perturbation series for quantum chromodynamics to obtain an estimate for the contribution of hard-scattering processes involving vector gluons to the production of hadrons at large transverse momentum. Some simple models for the distribution of gluons in a proton and for the distribution of hadrons within a hard gluon jet are presented and used to calculate the process $\mathrm{pp}\ensuremath{\rightarrow}{\ensuremath{\pi}}^{0}X$. At $\sqrt{s}=53$ GeV we find that the contribution of the subprocess $\mathrm{qV}\ensuremath{\rightarrow}\mathrm{qV}$ is comparable to that of $\mathrm{qq}\ensuremath{\rightarrow}\mathrm{qq}$. The resulting cross sections are rather close to the CERN ISR data in magnitude. It is possible that small corrections arising, for example, from higher-order terms in the perturbation expansion might lead to a detailed fit to these data. At higher energies, such as those to be obtained in proposed new experimental facilities, our results indicate that the mechanisms $\mathrm{VV}\ensuremath{\rightarrow}\mathrm{VV}$ and $\mathrm{qV}\ensuremath{\rightarrow}\mathrm{qV}$ may dominate over $\mathrm{qq}\ensuremath{\rightarrow}\mathrm{qq}$ in much of the accessible kinematic regime. We briefly consider some experimental consequences of possible gluon dominance.