Coexistence of antiferromagnetism and superconductivity in heavy-fermions systems
arXiv:cond-mat/0201040 · doi:10.1016/S0022-3697(02)00133-6
Abstract
We report the novel pressure(P)-temperature(T) phase diagrams of antiferromagnetism (AF) and superconductivity (SC) in CeRhIn, CeIn and CeCuSi revealed by the NQR measurement. In the itinerant helical magnet CeRhIn, we found that the Néel temperature is reduced at 1.23 GPa with an emergent pseudogap behavior. The coexistence of AF and SC is found in a narrow P range of 1.63 - 1.75 GPa, followed by the onset of SC with line-node gap over a wide P window 2.1 - 5 GPa. In CeIn, the localized magnetic character is robust against the application of pressure up to 1.9 GPa, beyond which the system evolves into an itinerant regime in which the resistive superconducting phase emerges. We discuss the relationship between the phase diagram and the magnetic fluctuations. In CeCuSi, the SC and AF coexist on a microscopic level once its lattice parameter is expanded. We remark that the underlying marginal antiferromagnetic state is due to collective magnetic excitations in the superconducting state in CeCuSi. An interplay between AF and SC is discussed on the SO(5) scenario that unifies AF and SC. We suggest that the SC and AF in CeCuSi have a common mechanism.
6 pages, 5 figures, proceeding of ISSP2001
References in corpus (4)
- A New Heavy-Fermion Superconductor CeIrIn5: Relative of the Cuprates?
- Pressure-induced anomalous magnetism and unconventional superconductivity in CeRhIn5 : 115In-NQR Study under Pressure
- Exotic Superconducting Phase in CeCu2Si2 Close to Antiferromagnetism : A Cu-NQR Study under Hydrostatic Pressure
- Coexistence of Superconductivity and Antiferromagnetism in Heavy-Fermion Superconductor CeCu_{2}(Si_{1-x}Ge_{x})_{2} Probed by Cu-NQR --A Test Case for the SO(5) Theory--
Cited by in corpus (8)
- SO(5) Theory of Antiferromagnetism and Superconductivity
- Theory of Superconductivity in Strongly Correlated Electron Systems
- Realization of odd-frequency p-wave spin-singlet superconductivity coexisting with antiferromagnetic order near quantum critical point
- Homogeneous vs. inhomogeneous coexistence of magnetic order and superconductivity probed by NMR in Co and K doped iron pnictides
- Interacting Antiferromagnetic Droplets in Quantum Critical CeCoIn_5
- Berry phase in Magnetic Superconductors
- Nuclear magnetic resonance in the heavy fermion superconductors
- Local structure and site occupancy of Cd and Hg substitutions in CeTIn5 (T=Co, Rh, Ir)