arXiv · cond-mat/0107304
Longitudinal spin-fluctuations and superconductivity in ferromagnetic ZrZn$_{2}$ from ab initio calculations
Abstract
The recent discovery of superconductivity coexisting with weak itinerant ferromagnetism in the $d$-electron intermetallic compound ZrZn$_{2}$ strongly suggests spin-fluctuation mediated superconductivity. {\it Ab initio} electronic structure calculations of the Fermi surface and generalized susceptibilities are performed to investigate the viability of longitudinal spin-fluctuation-induced spin-triplet superconductivity in the ferromagnetic state. The critical temperature is estimated to be of the order of 1 K. Additionally, it is shown that in spite of a strong electron-phonon coupling ($λ_{ph}=0.7$), conventional s-wave superconductivity is inhibited by the presence of strong spin-fluctuations.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
G. Santi, S. B. Dugdale, T. Jarlborg. 2001-07-13. Longitudinal spin-fluctuations and superconductivity in ferromagnetic ZrZn$_{2}$ from ab initio calculations. https://doi.org/10.1103/physrevlett.87.247004
Cite the original work for its findings. Save a collection to share your selection of sources.