Skyrmion-vortex hybrid and spin wave solutions in superconducting ferromagnets
Shantonu Mukherjee, Amitabha Lahiri

TL;DR
This paper explores the coexistence of skyrmions and vortices in ferromagnetic superconductors, revealing topological spin structures and unique spin wave behaviors, including a magnetic roton mode, with potential experimental implications.
Contribution
The study introduces a combined skyrmion-vortex topological solution and analyzes spin wave dispersion, highlighting novel features like a non-zero wave vector minimum and magnetic roton modes in ferromagnetic superconductors.
Findings
Skyrmion-vortex composite structures are numerically demonstrated.
Spin wave dispersion exhibits a minimum at non-zero wave vector, indicating unique low-energy excitations.
Presence of vortex modifies spin wave amplitude, resembling Nl skyrmions.
Abstract
The coexistence of Ferromagnetism and superconductivity in so called ferromagnetic superconductors is an intriguing phenomenon which may lead to novel physical effects as well as applications. Here in this work we have explored the interplay of topological excitations, namely vortices and skyrmions, in ferromagnetic superconductors using a field theoretic description of such systems. In particular, numerical solutions for the continuous spin field compatible to a given vortex profile are determined in absence and presence of a Dzyaloshinskii-Moriya interaction (DMI) term. The solutions show that the spin configuration is like a skyrmion but intertwined with the vortex structure -- the radius of the the skyrmion-like solution depends on the penetration depth and also the polarity of the skyrmion depends on the sign of the winding number. Thus our solution describes a topological…
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Taxonomy
TopicsPhysics of Superconductivity and Magnetism · Magnetic Properties of Alloys · Superconducting Materials and Applications
