English

Perturbative Color Transparency in Electroproduction Experiments

High Energy Physics - Phenomenology 2009-10-31 v2 Nuclear Experiment Nuclear Theory

Abstract

We calculate quasi-exclusive scattering of a virtual photon and a proton or pion in nuclear targets. This is the first complete calculation of ``color transparency" and "nuclear filtering " in perturbative QCD. The calculation includes full integrations over hard interaction kernels and distribution amplitudes in Feynman -x fractions and transverse spatial separation space bb. Sudakov effects depending on bb and the momentum transfer Q2Q^2 are included. Attenuation of the hadronic states propagating through the medium is calculated using an eikonal Glauber formalism. Nuclear correlations are included explicitly. We find that the color transparency ratio is comparatively insensitive to theoretical uncertainties inherent in perturbative formalism, such as choice of infrared cutoff scales. However, the Q2Q^2 dependence of the transparency ratio is found to depend sensitively on the model of the distribution amplitude, with endpoint-dominated models failing to be dominated by short-distance. Color transparency experiments should provide an excellent test of the underlying theoretical assumptions used in the pQCD calculations.

Keywords

Cite

@article{arxiv.hep-ph/9812506,
  title  = {Perturbative Color Transparency in Electroproduction Experiments},
  author = {Bijoy Kundu and Jim Samuelsson and Pankaj Jain and John P. Ralston},
  journal= {arXiv preprint arXiv:hep-ph/9812506},
  year   = {2009}
}

Comments

16 pages LaTeX, 9 ps figures. Text extensively revised, references added and all the figures modified with an improved calculation. Results remain unchanged qualitatively