General consequences of the violated Feynman scaling

Physics – High Energy Physics

Scientific paper

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Cosmic Rays, Elastic Scattering, Feynman Diagrams, Hadrons, Particle Production, Scattering Cross Sections, Distribution (Property), Kinematics, Particle Accelerators, Particle Interactions

Scientific paper

The problem of scaling of the hadronic production cross sections represents an outstanding question in high energy physics especially for interpretation of cosmic ray data. A comprehensive analysis of the accelerator data leads to the conclusion of the existence of breaked Feynman scaling. It was proposed that the Lorentz invariant inclusive cross sections for secondaries of a given type approaches constant in respect to a breaked scaling variable xs. Thus, the differential cross sections measured in accelerator energy can be extrapolated to higher cosmic ray energies. This assumption leads to some important consequences. The distribution of secondary multiplicity that follows from the violated Feynman scaling using a similar method of Koba et al is discussed.

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