Interpreting virtual photon interactions in terms of parton distribution functions
J. Chýla, M. Taševský
Abstract
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J. Chýla, M. Taševský
Abstract
Open-access reader
Interactions of virtual photons are analyzed in terms of photon structure. It is argued that the concept of parton distribution functions is phenomenologically very useful even for virtual photons involved in hard collisions. This claim is illustrated on leading order expressions for ${F}_{2}^{\ensuremath{\gamma}}{(x,P}^{2}{,Q}^{2})$ and the effective parton distribution function ${D}_{\mathrm{eff}}{(x,P}^{2}{,Q}^{2})$ relevant for jet production in ${\ensuremath{\gamma}}^{*}p$ collisions, as well as within the next-to-leading order QCD calculations of jet cross sections in $\mathrm{ep}$ collisions.
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Interactions of virtual photons are analyzed in terms of photon structure. It is argued that the concept of parton distribution functions is phenomenologically very useful even for virtual photons involved in hard collisions. This claim is illustrated on leading order expressions for ${F}_{2}^{\ensuremath{\gamma}}{(x,P}^{2}{,Q}^{2})$ and the effective parton distribution function ${D}_{\mathrm{eff}}{(x,P}^{2}{,Q}^{2})$ relevant for jet production in ${\ensuremath{\gamma}}^{*}p$ collisions, as well as within the next-to-leading order QCD calculations of jet cross sections in $\mathrm{ep}$ collisions.
Key concepts: Parton, Virtual particle, Physics, Particle physics, Jet (fluid), Photon, Distribution function, Quantum chromodynamics