Magnetic effects on the phase transitions in unconventional superconductors
Dimo I. Uzunov
Abstract
A new critical behavior in unconventional superconductors and superfluids is established and described by the Wilson-Fisher renormalization-group method. For certain symmetries of order a new type of fluctuation-driven first order phase transitions at finite and zero temperature are predicted. The results can be applied to a wide class of ferromagnetic superconductive and superfluid systems, in particular, to itinerant ferromagnets as UGe2 and URhGe.
Create a lesson
Related papers
Superconductivity of Tellurium Polyhydride with Tc above 90K
Jinfu Zhu, Guiqi Liu, Yuanhao Su et al.
Twist-Tunable Paramagnetic Superconductivity in d-wave Altermagnet/Superconductor Heterostructures
Narges Kia, Saeed H. Abedinpour, Zahra Faraei
Chemical Perspectives on Cuprate Superconductivity: Hole-Protected Spin Dimers as d Wave Cooper Pairs
Myung-Hwan Whangbo, Reinhard K. Kremer
Superheating Field of Extreme Type-II Superconductors Calculated from the Eliashberg Theory
Ramesh Paudel, Alex Gurevich
Ballistic-to-Localized Dynamics as Signature of Quantum Phase Transition in Josephson Junction
F. G. Capone, A. de Candia, G. Di Bello et al.
Interplay of Excitonic Charge Density Wave and Superconductivity in Transition Metal Dichalcogenides
Ayussh Anubhav Patel, Amit Ghosal