arXiv · 1108.4638
Magnetic Exciton Mediated Superconductivity in the Hidden-Order Phase of URu2Si2
Abstract
We propose the magnetic exciton mediated superconductivity occurring in the enigmatic hidden-order phase of URu2Si2. The characteristic of the massive collective excitation observed only in the hidden-order phase is well reproduced by the antiferro hexadecapole ordering model as the trace of the dispersive crystalline-electric-field excitation. The disappearance of the superconductivity in the high-pressure antiferro magnetic phase can naturally be understood by the sudden suppression of the magnetic-exciton intensity. The analysis of the momentum dependence of the magnetic-exciton mode leads to the exotic chiral d-wave singlet pairing in the Eg symmetry. The Ising-like magnetic-field response of the mode yields the strong anisotropy observed in the upper critical field even for the rather isotropic 3-dimensional Fermi surfaces of this compound.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Hiroaki Kusunose. 2011-09-01. Magnetic Exciton Mediated Superconductivity in the Hidden-Order Phase of URu2Si2. https://doi.org/10.1143/jpsj.81.023704
Cite the original work for its findings. Save a collection to share your selection of sources.