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Maxwell's equations on the $\kappa$-Minkowski spacetime and Electric-Magnetic duality

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abstract

We derive the Maxwell's equations on the $\kappa$-deformed spacetime, valid up to first order in the deformation parameter, using the Feynman's approach. We show that the electric-magnetic duality is a symmetry of these equations. It is also shown that the laws of electrodynamics are {\it different} for particles of equal charges, but with different masses. We show that the Poincare angular momentum, required to maintain the usual Lorentz algebra structure, do not get any $\kappa$-dependent corrections.

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hep-th 1

years

2024 1

verdicts

CONDITIONAL 1

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Yang-Mills Field in the $\kappa$-space-time

hep-th · 2024-11-18 · conditional · novelty 6.0

A first-order SU(N) Yang-Mills theory on κ-deformed spacetime is constructed, with field strengths rescaled by probe-energy-dependent factors and an SU(N)-invariant Lagrangian.

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  • Yang-Mills Field in the $\kappa$-space-time hep-th · 2024-11-18 · conditional · none · ref 27 · internal anchor

    A first-order SU(N) Yang-Mills theory on κ-deformed spacetime is constructed, with field strengths rescaled by probe-energy-dependent factors and an SU(N)-invariant Lagrangian.