Isotropic and Anisotropic Regimes of the Field-Dependent Spin Dynamics in Sr2IrO4: Raman Scattering Studies
arXiv:1509.06409 · doi:10.1103/PhysRevB.93.024405
Abstract
A major focus of experimental interest in Sr2IrO4 has been to clarify how the magnetic excitations of this strongly spin-orbit coupled system differ from the predictions of anisotropic 2D spin-1/2 Heisenberg model and to explore the extent to which strong spin-orbit coupling affects the magnetic properties of iridates. Here, we present a high-resolution inelastic light (Raman) scattering study of the low energy magnetic excitation spectrum of Sr2IrO4 and doped Eu-doped Sr2IrO4 as functions of both temperature and applied magnetic field. We show that the high-field (H>1.5 T) in-plane spin dynamics of Sr2IrO4 are isotropic and governed by the interplay between the applied field and the small in-plane ferromagnetic spin components induced by the Dzyaloshinskii-Moriya interaction. However, the spin dynamics of Sr2IrO4 at lower fields (H<1.5 T) exhibit important effects associated with interlayer coupling and in-plane anisotropy, including a spin-flop transition at Hc in Sr2IrO4 that occurs either discontinuously or via a continuous rotation of the spins, depending upon the in-plane orientation of the applied field. These results show that in-plane anisotropy and interlayer coupling effects play important roles in the low-field magnetic and dynamical properties of Sr2IrO4.
8 pages, 4 figures, submitted
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- Pseudo Jahn-Teller Effect and Magnetoelastic Coupling in Spin-Orbit Mott Insulators
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- Pseudospin-lattice coupling in the spin-orbit Mott insulator Sr2IrO4
- Giant magnetic response of a two-dimensional antiferromagnet
- Electrical Control of Structural and Physical Properties via Strong Spin-Orbit Interactions in Sr2IrO4
- Raman scattering study of vibrational and magnetic excitations in SrLaIrO
- Anisotropic exchange and spin-wave damping in pure and electron-doped SrIrO
- Quantum spin nematic phase in a square-lattice iridate
- Magnons and Magnetodielectric Effects in CoCrO: Raman Scattering Studies
- Spin-gap and two-dimensional magnetic excitations in Sr2IrO4
- Comprehensive Control of Metamagnetic Transition of Antiferromagnetic Mott Insulator Sr2IrO4 by in-situ Anisotropic Strain
- Decoupling of static and dynamic criticality in a driven Mott insulator
- Pseudospin-lattice coupling and electric control of the square-lattice iridate Sr2IrO4
- Linear scaling relationship of Néel temperature and dominant magnons in pyrochlore ruthenates
- Magnetic order, disorder, and excitations under pressure in the Mott insulator SrIrO
- Single laser pulse driven thermal limit of the quasi-two dimensional magnetic ordering in SrIrO
- Evidence of Slater-type mechanism as origin of insulating state in Sr2IrO4
- Magneto-synthesis effect on magnetic order, phonons, and magnons in single-crystal SrIrO
- Non-Loudon-Fleury Raman scattering in spin-orbit coupled Mott insulators