Homogeneous Phase of Coexistence of Spin-Triplet Superconductivity and Ferromagnetism
D. V. Shopova, D. I. Uzunov

TL;DR
This paper investigates the homogeneous coexistence phase of spin-triplet superconductivity and ferromagnetism using a phenomenological model, with implications for metallic ferromagnets like UGe2 and ZrZn2.
Contribution
It introduces a phenomenological model to analyze the homogeneous coexistence of spin-triplet superconductivity and ferromagnetism.
Findings
Coexistence phase analyzed within the model.
Results applicable to specific metallic ferromagnets.
Discussion of phase stability and properties.
Abstract
The coexistence of a homogeneous (Meissner-like) phase of spin-triplet superconductivity and ferromagnetism is investigated within the framework of a phenomenological model of spin-triplet ferromagnetic superconductors. The results are discussed in view of application to metallic ferromagnets as UGe, ZrZn, URhGe, and Fe.
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Taxonomy
TopicsRare-earth and actinide compounds · Magnetic Properties of Alloys · Theoretical and Computational Physics
