No gauge cancellation at high energy in the five-vector $R_\xi$ gauge
Jaehoon Jeong

TL;DR
This paper introduces a new five-vector $R_$ gauge in the Abelian Higgs model that ensures finite high-energy tree-level amplitudes and clarifies the origin of divergences across different gauges.
Contribution
It develops a novel 5V $R_$ gauge framework that improves understanding of high-energy divergences and treats the Goldstone field as a fifth gauge component.
Findings
The 5V $R_$ gauge yields non-divergent tree-level amplitudes at high energy.
Comparison shows the 5V $R_$ gauge aligns with the Feynman diagram gauge in divergence behavior.
The framework offers deeper insight into gauge dynamics and divergence origins.
Abstract
We propose a novel gauge in the five-vector (5V) framework within the Abelian Higgs model. In the Cartesian basis of the complex Higgs field, the 5V gauge ensures non-divergent tree-level amplitudes for each Feynman diagram in the high-energy limit. This framework pinpoints the origin of high-energy divergences in tree-level amplitudes for each diagram, providing a criterion for quantifying the degree of divergences from other gauges. The 5V description necessitates treating the Goldstone field as the fifth gauge-field component, offering deeper insight into the dynamics of massive gauge bosons, particularly its longitudinal mode. The impact of this framework is demonstrated by rigorously comparing tree-level amplitudes from the 5V gauge with those from the conventional 4V gauge and the Feynman diagram gauge, the latter of which exhibits no gauge…
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Taxonomy
TopicsParticle physics theoretical and experimental studies · Medical Imaging Techniques and Applications · Quantum Chromodynamics and Particle Interactions
