Enhanced Magneto-optical Kerr Effect at Fe/Insulator Interfaces
arXiv:1710.09986 · doi:10.1103/PhysRevB.96.214423
Abstract
Using density functional theory calculations, we have found an enhanced magneto-optical Kerr effect in Fe/insulator interfaces. The results of our study indicate that interfacial Fe atoms in the Fe films have a low-dimensional nature, which causes the following two effects: (i) The diagonal component of the optical conductivity decreases dramatically because the hopping integral for electrons between Fe atoms is suppressed by the low dimensionality. (ii) The off-diagonal component of the optical conductivity does not change at low photon energies, but it is enhanced at photon energies around 2 eV, where we obtain enhanced orbital magnetic moments and spin-orbit correlations for the interfacial Fe atoms. A large Kerr angle develops in proportion to the ratio . Our findings indicate an efficient way to enhance the effect of spin-orbit coupling at metal/insulator interfaces without using heavy elements.
6 pages, 5 figures
References in corpus (11)
- Quantum ESPRESSO: a modular and open-source software project for quantum simulations of materials
- Additive interfacial chiral interaction in multilayers for stabilization of small individual skyrmion at room temperature
- First Principles Calculation of Anomalous Hall Conductivity in Ferromagnetic bcc Fe
- Spectral and Fermi surface properties from Wannier interpolation
- Gate-controllable magneto-optic Kerr effect in layered collinear antiferromagnets
- Large voltage-induced modification of spin-orbit torques in Pt/Co/GdOx
- Enhanced spin Hall effect by resonant skew scattering in orbital-selective Kondo effect
- Magnetization dynamics and its scattering mechanism in thin CoFeB films with interfacial anisotropy
- Pseudo-potentials based first-principles approach to the magneto-optical Kerr effect: from metals to the inclusion of local fields and excitonic effects
- Sign change of the spin Hall effect due to electron correlation in nonmagnetic CuIr alloys
- Angle Dependence of Photonic Enhancement of Magneto-Optical Kerr Effect in DMS Layers