Effect of a staggered spin-orbit coupling on the occurrence of a nematic phase in SrRuO
arXiv:0909.5392 · doi:10.1103/PhysRevB.81.064435
Abstract
Ultra-clean crystals of SrRuO undergo a metamagnetic transition at low temperatures. This transition shows a strong anisotropy in the applied field direction with the critical field ranging from T for to T for . In addition, studies on ultra-pure samples revealed a bifurcation of the metamagnetic line for fields in -direction and it is argued that a nematic phase emerges between the magnetization jumps. The aim of this study is to explain the field-direction anisotropy of these phenomena. Based on a microscopic tight-binding model, we introduce the metamagnetic transition by means of a van Hove singularity scenario. We show that the rotation of the O-octahedra around the c-axis expected for this material introduces a staggered spin-orbit coupling within the planes and naturally leads to an anisotropy of the magnetic response. We describe the low-temperature phase as a nematic state favored by forward scattering processes. The spin-orbit coupling shows an influence on both, the critical field and the occurrence of the nematic phase.
References in corpus (9)
- Formation of a Nematic Fluid at High Fields in Sr3Ru2O7
- Instability toward Formation of Quasi-One-Dimensional Fermi Surface in Two-Dimensional t-J Model
- Fermi surface and van Hove singularities in the itinerant metamagnet Sr3Ru2O7
- Metamagnetism of itinerant electrons in multi-layer ruthenates
- Unconventional metamagnetic electron states in orbital band systems
- Microscopic Route to Nematicity in Sr3Ru2O7
- Van Hove singularity and spontaneous Fermi surface symmetry breaking in Sr3Ru2O7
- Effect of magnetic field on spontaneous Fermi surface symmetry breaking
- Nematic domains and resistivity in an itinerant metamagnet coupled to a lattice
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