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Main Authors: Alonso-Izquierdo, A., Manton, N. S., Guilarte, J. Mateos, Wereszczynski, A.
Format: Preprint
Published: 2024
Subjects:
Online Access:https://arxiv.org/abs/2405.20249
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author Alonso-Izquierdo, A.
Manton, N. S.
Guilarte, J. Mateos
Wereszczynski, A.
author_facet Alonso-Izquierdo, A.
Manton, N. S.
Guilarte, J. Mateos
Wereszczynski, A.
contents Models are developed for the motion of charge-2 Abelian Higgs vortices through the 2-vortex moduli space $M$, with the vortices excited by their shape mode oscillations. The models simplify to the well-known geodesic flow on $M$, modified by a potential, when the mode oscillations are fast relative to the moduli space motion and their amplitudes are small. When the lowest-frequency mode is excited with a large amplitude, the geodesic flow is not a correct description. Instead, a chaotic, or even fractal, multi-bounce structure in vortex-vortex collisions is predicted.
format Preprint
id arxiv_https___arxiv_org_abs_2405_20249
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Collective Coordinate Models for 2-Vortex Shape Mode Dynamics
Alonso-Izquierdo, A.
Manton, N. S.
Guilarte, J. Mateos
Wereszczynski, A.
High Energy Physics - Theory
Models are developed for the motion of charge-2 Abelian Higgs vortices through the 2-vortex moduli space $M$, with the vortices excited by their shape mode oscillations. The models simplify to the well-known geodesic flow on $M$, modified by a potential, when the mode oscillations are fast relative to the moduli space motion and their amplitudes are small. When the lowest-frequency mode is excited with a large amplitude, the geodesic flow is not a correct description. Instead, a chaotic, or even fractal, multi-bounce structure in vortex-vortex collisions is predicted.
title Collective Coordinate Models for 2-Vortex Shape Mode Dynamics
topic High Energy Physics - Theory
url https://arxiv.org/abs/2405.20249