Abstract

General properties of the spin motion in e +e − storage rings are studied in order to determine the conditions where radiative beam polarization is likely to occur. A general first-order theory of depolarization is developed and applied to specific examples of non-resonant depolarization in storage rings. It is found that under many practical conditions radiative beam polarization should occur and therefore the beam polarization will be a significant parameter in high-energy e +e − colliding beam experiments.

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