Anisotropic magnetoresistance in antiferromagnetic Sr2IrO4
arXiv:1409.3491 · doi:10.1103/PhysRevX.4.041034
Abstract
We report point-contact measurements of anisotropic magnetoresistance (AMR) in a single crystal of antiferromagnetic (AFM) Mott insulator Sr2IrO4. The point-contact technique is used here as a local probe of magnetotransport properties on the nanoscale. The measurements at liquid nitrogen temperature revealed negative magnetoresistances (MRs) (up to 28%) for modest magnetic fields (250 mT) applied within the IrO2 a-b plane and electric currents flowing perpendicular to the plane. The angular dependence of MR shows a crossover from four-fold to two-fold symmetry in response to an increasing magnetic field with angular variations in resistance from 1-14%. We tentatively attribute the four-fold symmetry to the crystalline component of AMR and the field-induced transition to the effects of applied field on the canting of AFM-coupled moments in Sr2IrO4. The observed AMR is very large compared to the crystalline AMRs in 3d transition metal alloys/oxides (0.1-0.5%) and can be associated with the large spin-orbit interactions in this 5d oxide while the transition provides evidence of correlations between electronic transport, magnetic order and orbital states. The finding of this work opens an entirely new avenue to not only gain a new insight into physics associated with spin-orbit coupling but also better harness the power of spintronics in a more technically favorable fashion.
13 pages, 3 figures
References in corpus (8)
- Novel Jeff = 1/2 Mott State Induced by Relativistic Spin-Orbit Coupling in Sr2IrO4
- Spin-Liquid State in the S = 1/2 Hyperkagome Antiferromagnet Na4Ir3O8
- Twisted Hubbard Model for Sr2IrO4: Magnetism and Possible High Temperature Superconductivity
- The magnetic and crystal structures of Sr2IrO4: A neutron diffraction study
- Spin transfer in an antiferromagnet
- Anisotropic Magnetoresistance components in (Ga,Mn)As
- Neutron scattering study of correlated phase behavior in Sr2IrO4
- Crystalline anisotropic magnetoresistance with two-fold and eight-fold symmetry in (In,Fe)As ferromagnetic semiconductor
Cited by in corpus (27)
- Antiferromagnetic spintronics
- Antiferromagnetic spintronics
- Spin-polarized current in non-collinear antiferromagnets
- Spin-orbit torques in locally and globally non-centrosymmetric crystals: Antiferromagnets and ferromagnets
- Enhanced spin pumping efficiency in antiferromagnetic IrMn thin films around the magnetic phase transition
- How to manipulate magnetic states of antiferromagnets
- All electrical manipulation of magnetization dynamics in a ferromagnet by antiferromagnets with anisotropic spin Hall effects
- The Intrinsic Magnetization of Antiferromagnetic Textures
- Perspective on Metallic Antiferromagnets
- Anisotropic magnetoresistance: materials, models and applications
- Spin flop and crystalline anisotropic magnetoresistance in CuMnAs
- Pseudospin-lattice coupling in the spin-orbit Mott insulator Sr2IrO4
- Dynamics of domain walls motion driven by spin-orbit torque in antiferromagnets
- Strain-engineering of the charge and spin-orbital interactions in Sr2IrO4
- Isotropic and Anisotropic Regimes of the Field-Dependent Spin Dynamics in Sr2IrO4: Raman Scattering Studies
- Novel spin-orbit coupling driven emergent states in iridate-based heterostructures
- Spin-orbit-enhanced magnetic surface second-harmonic generation in SrIrO
- Spin-flip-driven giant magneto-transport in A-type antiferromagnet NaCrTe2
- Anisotropic and extreme magnetoresistance in the magnetic semimetal candidate Erbium monobismuthide
- Electrically Tunable Band Gap in Antiferromagnetic Mott Insulator Sr2IrO4
- Spin texture motion in antiferromagnetic and ferromagnetic nanowires
- Spatially Nonuniform Oscillations in Ferrimagnets Based on an Atomistic Model
- Persistent large anisotropic magnetoresistance and insulator to metal transition in spin-orbit coupled antiferromagnets Sr2(Ir1-xGax)O4
- Controllable emergent spatial spin modulation in Sr2IrO4 by in situ shear strain
- Epitaxial growth and antiferromagnetism of Sn-substituted perovskite iridate SrIrSnO
- Exploring the energy landscape of resistive switching in antiferromagnetic Sr(3)Ir(2)O(7)
- In-plane anisotropic magnetoresistance in detwinned ( = 0, 0.6)