Coupled CDW and SDW Fluctuations as an Origin of Anomalous Properties of Ferromagnetic Superconductor UGe_2
arXiv:cond-mat/0110492 · doi:10.1143/JPSJ.71.2489
Abstract
It is shown that anomalous properties of UGe_2 can be understood in a unified way on the basis of a single assumption that the superconductivity is mediated by the coupled SDW and CDW fluctuations induced by the imperfect nesting of the Fermi surface with majority spins at T=T_x(P) deep in the ferromagnetic phase. Excess growth of uniform magnetization is shown to develop in the temperature range T<T_x(P) as a mode-coupling effect of coupled growth of SDW and CDW orderings, which has been observed by two different types of experiments. The coupled CDW and SDW fluctuations are shown to be essentially ferromagnetic spin fluctuations which induce a spin-triplet p-wave attraction. These fluctuations consist of two modes, spin and charge fluctuations with large momentum transfer of the nesting vector. An anomalous temperature dependence of the upper critical field H_c2(T) such as crossing of H_c2(T) at P=11.4 kbar and P=13.5 kbar, can be understood by the strong-coupling-superconductivity formalism. Temperature dependence of the lattice specific heat including a large shoulder near T_x is also explained quite well as an effect of a kind of Kohn anomaly associated with coupled SDW-CDW transition.
(12 pages, 10 eps figures) submitted to J. Phys. Soc. Jpn
References in corpus (1)
Cited by in corpus (28)
- Superconducting phases of f-electron compounds
- Unconventional Superconductivity
- Review of U-based Ferromagnetic Superconductors: Comparison between UGe2, URhGe, and UCoGe
- Ferromagnetism and Superconductivity in Uranium Compounds
- Tricritical point and wing structure in the itinerant ferromagnet UGe2
- Quasi-two-dimensional Fermi surfaces and unitary spin-triplet pairing in the heavy fermion superconductor UTe
- Superconductivity and Ferromagnetic Quantum Criticality in Uranium Compounds
- Superconductivity, magnetism and crystal chemistry of Ba1-xKxFe2As2
- Field Re-entrant Superconductivity Induced by the Enhancement of Effective Mass in URhGe
- Evidence for Uniform Coexistence of Ferromagnetism and Unconventional Superconductivity in UGe_2: A ^73Ge-NQR Study under Pressure
- Valence Fluctuations Revealed by Magnetic Field Scan: Comparison with Experiments in YbXCu_4 (X=In, Ag, Cd) and CeYIn_5 (Y=Ir, Rh)
- Heat-capacity anomalies at and in the ferromagnetic superconductor UGe
- Properties of Ferromagnetic Superconductors
- Evidence for ferromagnetic spin-pairing superconductivity in UGe: A Ge-NQR study under pressure
- Stoner gap in the superconducting ferromagnet UGe2
- Electronic structure of UGe at ambient pressure: comparison with X-ray photoemission spectra
- Ubiquity of Unconventional Phenomena Associated with Critical Valence Fluctuations in Heavy Fermion Metals
- Strong correlation between ferromagnetic superconductivity and pressure-enhanced ferromagnetic fluctuations in UGe
- Pressure-induced Superconductivity in a Ferromagnet UGe -- Resistivity Measurements in Magnetic Field --
- Two Ferromagnetic Phases in Spin-Fermion Systems
- Split transition in ferromagnetic superconductors
- Signatures of pairing mechanisms and order parameters in ferromagnetic superconductors
- Role of Local Ru Hexamers in Superconductivity of Ruthenium Phosphide
- Evidence for an antiferromagnetic component in the magnetic structure of ZrZn2
- Phonon spectrum of the ferromagnetic superconductor UGe : Consequences for the specific heat
- Coexistence of CDW with staggered superconductivity in a ferromagnetic material
- RKKY interaction in the presence of a charge-density-wave order
- Ferromagnetic phases in spin-Fermion systems