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Journal ArticleDOI

Field and particle equations for the classical Yang-Mills field and particles with isotopic spin

TLDR
A complete system of equations describing the interaction between the Yang-Mills field and isotopic-spin-carrying particles in the classical limit is extracted from the equations of motion for the quantum fields.
Abstract
A complete system of equations describing the interaction between the Yang-Mills field and isotopic-spin-carrying particles in the classical limit is extracted from the equations of motion for the quantum fields. Some simple consequences are derived. The consistency of the equations is investigated.

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Citations
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Journal ArticleDOI

Relativistic particle simulation of color diffusion in a SU(2) Yang-Mills plasma

TL;DR: In this article, a relativistic particle-in-cell simulation study of color transport in a SU(2) Yang-Mills plasma was conducted, showing that the color distribution starting from a spiky form spreads to a flat one through a diffusive process in color space.
Proceedings ArticleDOI

Motion of Coloured Particles in Solitons of the O(3) Non-Linear Model

TL;DR: In this article, a consistent expression for the relativistic quadri-force referring to the classical interaction between a coloured particle and a scalar field multiplete was proposed. But it was only applied to the case of a SU(2) particle in the presence of a soliton configuration with unit topological charge.
Journal ArticleDOI

The Boltzmann Equation in Scalar Field Theory

TL;DR: In this article, the classical transport equation in scalar field theory with a V(phi) interaction was derived from the equation of motion for the quantum field, and a simple but iterative expression for the effective action which generates all the n-point Green functions in the high-temperature limit was given.
References
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Journal ArticleDOI

Conservation of Isotopic Spin and Isotopic Gauge Invariance

TL;DR: In this article, it was pointed out that the usual principle of invariance under isotopic spin rotation is not consistant with the concept of localized fields, and the possibility of having invariance in local isotope spin rotations was explored.
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