Localized Vector Modes on Local Cosmic Strings
Sergio Alameda-Calvo, Jose J. Blanco-Pillado, Jose Queiruga
hep-th, astro-ph.CO, hep-ph
Submitted: 2026-07-17
Comments: 45 pages, 16 figures
License: http://creativecommons.org/licenses/by/4.0/
The gist: We investigate the dynamics of vector excitations localized on cosmic strings in the Abelian-Higgs model.
Terminology
Abstract
We investigate the dynamics of vector excitations localized on cosmic strings in the Abelian-Higgs model. These confined gauge field fluctuations behave as massive vector degrees of freedom propagating along the string. We show that they remain bounded for all values of the scalar self coupling lambda, including parameter regimes in which the previously studied conventional shape mode is no longer present. After determining their spectra and spatial profiles, we analyze their decay through nonlinear coupling to bulk radiation. Their amplitudes exhibit the characteristic power law relaxation associated with non-linear radiation. For sufficiently large lambda the scalar radiation channel becomes kinematically inaccessible and the decay is instead mediated by quasinormal modes which can be interpreted as Feshbach resonances of the string. We then study the full 3+1 dimensional dynamics of the vector-excited string. Field theory simulations reveal a parametric instability between the vector mode and the Goldstone sector. In contrast to the shape mode, the vector mode resonantly excites both transverse directions simultaneously. In addition, we build an effective model that captures the instability and identifies the nonlinear couplings responsible for it. Our results show that vector excitations constitute a long-lived massive degree of freedom with a non-trivial role in the dynamics of local strings.
Sources
- Constraints on cosmic strings using data from the third Advanced LIGO-Virgo observing run
- Gravitational waves from cosmic strings in LISA: reconstruction pipeline and physics interpretation
- The NANOGrav 15-year Data Set: Search for Signals from New Physics
- Probing the gravitational wave background from cosmic strings with LISA
- The Science of the Einstein Telescope
- On curvature corrections for field theory cosmic strings
- Exciting the Domain Wall Soliton
- The dynamics of Domain Wall Strings
- Effective Actions for Domain Wall Dynamics
- Parametric Resonances in Axionic Cosmic Strings
- Spectral wall in collisions of excited Abelian Higgs vortices
- Resonance phenomena in vortex-antivortex collisions
- Dynamics of Excited BPS 3-Vortices
- From BPS geodesics to mode-driven dynamics in the scattering of multiple BPS vortices
- Loop decay in Abelian-Higgs string networks
- The number of cosmic string loops
- Excited Abelian-Higgs vortices: decay rate and radiation emission
- A note on BPS vortex bound states
- Dissecting zero modes and bound states on BPS vortices in Ginzburg-Landau superconductors
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