Roper resonances and quasi-normal modes of Skyrmions
arXiv:1710.00837 · doi:10.1007/JHEP03(2018)023
Abstract
Radial vibrations of charge one hedgehog Skyrmions in the full Skyrme model are analysed. We investigate how the properties of the lowest resonance modes (quasi normal modes) - their frequencies and widths - depend on the form of the potential (value of the pion mass as well as the addition of further potentials) and on the inclusion of the sextic term. Then we consider the inverse problem, where certain values for the frequencies and widths are imposed, and the field theoretic Skyrme model potential giving rise to them is reconstructed. This latter method allows to reproduce the physical Roper resonances, as well as further physical properties of nucleons, with high precision.
LaTex, 24 pages, 18 figures
References in corpus (14)
- A BPS Skyrme model and baryons at large Nc
- Light Nuclei of Even Mass Number in the Skyrme Model
- Light Nuclei as Quantized Skyrmions
- Resonant kink-antikink scattering through quasinormal modes
- A dynamical -cluster model of O
- States of Carbon-12 in the Skyrme Model
- BPS Skyrmions as neutron stars
- On asymptotic stability of the Skyrmion
- Thermodynamics of the BPS Skyrme model
- A point particle model of lightly bound skyrmions
- Generalized Skyrme model with the loosely bound potential
- Oscillons in the presence of external potential
- Radial vibrations of BPS skyrmions
- Skyrmion Vibration Modes within the Rational Map Ansatz