Insulating phase in SrIrO: An investigation using critical analysis and magnetocaloric effect
arXiv:1512.02041 · doi:10.1016/j.jmmm.2016.08.065
Abstract
The nature of insulating phase in 5 based SrIrO is quite debated as the theoretical as well as experimental investigations have put forward evidences in favor of both magnetically driven Slater-type and interaction driven Mott-type insulator. To understand this insulating behavior, we have investigated the nature of magnetic state in SrIrO through studying critical exponents, low temperature thermal demagnetization and magnetocaloric effect. The estimated critical exponents do not exactly match with any universality class, however, the values obey the scaling behavior. The exponent values suggest that spin interaction in present material is close to mean-field model. The analysis of low temperature thermal demagnetization data, however, shows dual presence of localized- and itinerant-type of magnetic interaction. Moreover, field dependent change in magnetic entropy indicates magnetic interaction is close to mean-field type. While this material shows an insulating behavior across the magnetic transition, yet a distinct change in slope in resistivity is observed around . We infer that though the insulating phase in SrIrO more close to be Slater-type but the simultaneous presence of both Slater- and Mott-type is the likely scenario for this material.
References in corpus (8)
- Mott Insulators in the Strong Spin-Orbit Coupling Limit: From Heisenberg to a Quantum Compass and Kitaev Models
- Novel Jeff = 1/2 Mott State Induced by Relativistic Spin-Orbit Coupling in Sr2IrO4
- Bandwidth-Controlled Insulator-Metal Transition and Correlated Metallic State in 5 Transition Metal Oxides SrIrO (=1, 2, and )
- Twisted Hubbard Model for Sr2IrO4: Magnetism and Possible High Temperature Superconductivity
- Monte Carlo study of an unconventional superconducting phase in Ir-oxide J_{eff}=1/2 Mott insulators induced by carrier doping
- The magnetic and crystal structures of Sr2IrO4: A neutron diffraction study
- Neutron scattering study of correlated phase behavior in Sr2IrO4
- The importance of XY anisotropy in Sr2IrO4 revealed by magnetic critical scattering experiments
Cited by in corpus (8)
- Novel spin-orbit coupling driven emergent states in iridate-based heterostructures
- Effect of Cu substitution in Spin-Orbit Coupled SrIrCuO: Structure, magnetism and electronic properties
- Spin-phonon coupling in hole-doped pyrochlore iridates Y(IrRu)O: A Raman scattering study
- Large exchange bias and low temperature glassy state in frustrated triangular-lattice antiferromagnet BaNiIrO
- Critical behavior and magnetocaloric effect in ferromagnetic nano-crystalline PrCoMnO
- Critical behavior in itinerant ferromagnet SrRuTiO
- Magnetism and electrical transport in Y-doped layered iridate SrIrO
- Insight into the magnetic behavior of SrIrO:A spontaneous magnetization study