Non-Dynamical Structure of Photoproduction Processes

PAUL L. CSONKA, MICHAEL J. MORAVCSIK, and MICHAEL D. SCADRON
Rev. Mod. Phys. 39, 178 – Published 1 January 1967
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Abstract

This paper summarizes those general properties of photoproduction processes which are independent of the interactions among particles. The two types of reactions considered in detail are γ+12s+12 and γ+12s+32, where ½ and 32 denote particles with spins ½ and 32, respectively, and s denotes a particle with an arbitrary integer spin s. The first of these reactions is synthesized from the reactions γ+00+0, 0+120+12, and 0+0s+0. First the observable structure of these constituent reactions is derived, and then the composite structure is obtained. Detailed results for the observables are given for s=0, 1, and 2, and experiments designed to determine spin and parity are listed. The reaction γ+12s+32 is similarly composed of γ+00+0, 0+120+32, and 0+0s+0. Some results for this reaction are also tabulated. Finally, as a specific application of the above results, a method is suggested to determine the contribution of certain corrections to the static theory of pion photoproduction from nucleons. The whole paper is an application of the general nondynamical theory of particle reactions with arbitrary spins which was recently developed by the authors.

    DOI:https://doi.org/10.1103/RevModPhys.39.178

    ©1967 American Physical Society

    Authors & Affiliations

    PAUL L. CSONKA, MICHAEL J. MORAVCSIK, and MICHAEL D. SCADRON

    • Lawrence Radiation Laboratory, University of California, Livermore, California

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    Issue

    Vol. 39, Iss. 1 — January - March 1967

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