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- W2071426230 abstract "A system of two pointlike isocharges in a classical non-Abelian Yang-Mills theory is studied by matched asymptotic expansions. It is assumed that the velocities are small compared with the speed of light and that the dimensionless quantity $ensuremath{kappa}ensuremath{equiv}|q|{g}^{2}$ is much smaller than unity (here $g$ is the coupling constant and $|q|$ is the magnitude of either isocharge vector). The system is non-Abelian (and thus the Yang-Mills field equations are fully nonlinear), because the two isocharges are permitted to point in different directions in isospace. Radiation damping is shown to rotate the directions of the isocharge vectors while preserving their magnitudes---modulo higher-order effects. The charge vectors tend to rotate into commuting directions with respect to a basis that is parallel transported with respect to a background Abelian connection. In particular, bound systems approach an Abelian configuration after a time long compared with a characteristic time that depends on the magnitudes of the isocharges. This behavior suggests a classical analog of a color-singlet state in the quantized version of the theory." @default.
- W2071426230 created "2016-06-24" @default.
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- W2071426230 date "1983-12-15" @default.
- W2071426230 modified "2023-09-27" @default.
- W2071426230 title "Radiation damping of color in classical SU(2) Yang-Mills theory" @default.
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- W2071426230 doi "https://doi.org/10.1103/physrevd.28.3066" @default.
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