Relativistic Positron-Electron Bremsstrahlung at Wide Angles: A Numerical Calculation
Author(s) -
Stanley M. Swanson
Publication year - 1967
Publication title -
physical review
Language(s) - English
Resource type - Journals
eISSN - 1536-6065
pISSN - 0031-899X
DOI - 10.1103/physrev.154.1601
Subject(s) - physics , bremsstrahlung , electron , photon , positron , atomic physics , interpolation (computer graphics) , nuclear physics , computational physics , quantum mechanics , motion (physics) , classical mechanics
The bremsstrahlung spectrum for the process e+ + e-e+ + e+ y I) has been evaluated at photon emission angles of roughly 30’ to 120’ from the incident particles in the c.m. system. The’phase space integrals of the exact, lowest-order differential cross section were done numerically. A computer program was used to reduce the Dirac traces to invariants and to further simplify them until reasonably compact expressions were obtained. Numerical results for selected photon angles and energies are given for 15 BeV positrons incident upon electrons at rest in the laboratory and for 600 MeV and 4000 MeV positrons in the c. m. system (colliding beam experiments). It was found that certain relativistic approximations to the spectrum, which are valid for forward angles, are still fairly good at wide angles; an empirical modification to such an approximation is given which provides a useful interpolation formula for the wide angle region. * Work supported in part by the U. S. Air Force through the Air Force Office of Scientific Research Contract AF 49(638)-1389 and in part by the U. S. Atomic Energy Commission.
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