Soft Photons in Hadron-Hadron Collisions: Synchrotron Radiation from the QCD Vacuum?
G. W. Botz, P. Haberl, O. Nachtmann
Abstract
We discuss the production of soft photons in high energy hadron-hadron collisions. We present a model where quarks and antiquarks in the hadrons emit ``synchrotron light'' when being deflected by the chromomagnetic fields of the QCD vacuum, which we assume to have a nonperturbative structure. This gives a source of prompt soft photons with frequencies ω<= 300 MeV in the c.m. system of the collision in addition to hadronic bremsstrahlung. In comparing the frequency spectrum and rate of ``synchrotron'' photons to experimental results we find some supporting evidence for their existence. We make an exclusive--inclusive connection argument to deduce from the ``synchrotron'' effect a behaviour of the neutron electric formfactor GEn(Q2) proportional to (Q2)1/6 for Q2 < 20 fm-2. We find this to be consistent with available data. In our view, soft photon production in high energy hadron-hadron and lepton-hadron collisions as well as the behaviour of electromagnetic hadron formfactors for low Q2 are thus sensitive probes of the nonperturbative structure of the QCD vacuum.
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