Wobbling kinks in a two-component scalar field theory: Interaction between shape modes

Fuente: arXiv
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Main Authors: Alonso-Izquierdo, A., Miguélez-Caballero, D., Nieto, L. M., Queiroga-Nunes, J.
Format: Preprint
Published: 2022
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author Alonso-Izquierdo, A.
Miguélez-Caballero, D.
Nieto, L. M.
Queiroga-Nunes, J.
author_facet Alonso-Izquierdo, A.
Miguélez-Caballero, D.
Nieto, L. M.
Queiroga-Nunes, J.
contents In this paper the interaction between the shape modes of the wobbling kinks arising in the family of two-component MSTB scalar field theory models is studied. The spectrum of the second order small kink fluctuation in this model has two localized vibrational modes associated to longitudinal and orthogonal fluctuations with respect to the kink orbit. It has been found that the excitation of the orthogonal shape mode immediately triggers the longitudinal one. In the first component channel the kink emits radiation with twice the orthogonal wobbling frequency (not the longitudinal one as happens in the $ϕ^4$-model). The radiation emitted in the second component has two dominant frequencies: one is three times the frequency of the orthogonal wobbling mode and the other is the sum of the frequencies of the longitudinal and orthogonal vibration modes. This feature is explained analytically using perturbation expansion theories.
format Preprint
id arxiv_https___arxiv_org_abs_2207_10989
institution arXiv
publishDate 2022
record_format arxiv
spellingShingle Wobbling kinks in a two-component scalar field theory: Interaction between shape modes
Alonso-Izquierdo, A.
Miguélez-Caballero, D.
Nieto, L. M.
Queiroga-Nunes, J.
High Energy Physics - Theory
Mathematical Physics
Pattern Formation and Solitons
In this paper the interaction between the shape modes of the wobbling kinks arising in the family of two-component MSTB scalar field theory models is studied. The spectrum of the second order small kink fluctuation in this model has two localized vibrational modes associated to longitudinal and orthogonal fluctuations with respect to the kink orbit. It has been found that the excitation of the orthogonal shape mode immediately triggers the longitudinal one. In the first component channel the kink emits radiation with twice the orthogonal wobbling frequency (not the longitudinal one as happens in the $ϕ^4$-model). The radiation emitted in the second component has two dominant frequencies: one is three times the frequency of the orthogonal wobbling mode and the other is the sum of the frequencies of the longitudinal and orthogonal vibration modes. This feature is explained analytically using perturbation expansion theories.
title Wobbling kinks in a two-component scalar field theory: Interaction between shape modes
topic High Energy Physics - Theory
Mathematical Physics
Pattern Formation and Solitons
url https://arxiv.org/abs/2207.10989