Complex magnetic order in nickelate slabs
arXiv:1905.04160 · doi:10.1038/s41567-018-0218-5
Abstract
Magnetic ordering phenomena have a profound influence on the macroscopic properties of correlated-electron materials, but their realistic prediction remains a formidable challenge. An archetypical example is the ternary nickel oxide system RNiO3 (R = rare earth), where the period-four magnetic order with proposals of collinear and non-collinear structures and the amplitude of magnetic moments on different Ni sublattices have been subjects of debate for decades. Here we introduce an elementary model system - NdNiO3 slabs embedded in a non-magnetic NdGaO3 matrix - and use polarized resonant x-ray scattering (RXS) to show that both collinear and non-collinear magnetic structures can be realized, depending on the slab thickness. The crossover between both spin structures is correctly predicted by density functional theory and can be qualitatively understood in a low-energy spin model. We further demonstrate that the amplitude ratio of magnetic moments in neighboring NiO6 octahedra can be accurately determined by RXS in combination with a correlated double cluster model. Targeted synthesis of model systems with controlled thickness and synergistic application of polarized RXS and ab-initio theory thus provide new perspectives for research on complex magnetism, in analogy to two-dimensional materials created by exfoliation.
This is the accepted version of the manuscript. The revised manuscript according to peer reviews was published online in Nature Physics on July 23, 2018
References in corpus (17)
- 2D materials and van der Waals heterostructures
- Ground state oxygen holes and the metal-insulator transition in the negative charge transfer rare-earth nickelates
- Hybridization-controlled charge transfer and induced magnetism at correlated oxide interfaces
- Bond disproportionation and dynamical charge fluctuations in the perovskite rare earth nickelates
- Role of magnetic and orbital ordering at the metal-insulator transition in NdNiO3
- Low-energy description of the metal-insulator transition in the rare-earth nickelates
- Tunable Charge and Spin Order in PrNiO Thin Films and Superlattices
- Electronic Transitions in Strained SmNiO_3 Thin Films
- Tailoring the electronic transitions of NdNiO_3 films through (111)_pc oriented interfaces
- Electronic structure of (LaNiO)/(LaAlO) heterostructures grown along [111]
- Confinement-driven transitions between topological and Mott phases in (LaNiO3)/(LaAlO3)(111) superlattices
- Topological phases in layered pyrochlore oxide thin films along the [111] direction
- Interplay between breathing mode distortion and magnetic order in rare-earth nickelates NiO within DFT+
- Competing exchange interactions on the verge of a metal-insulator transition in the two-dimensional spiral magnet SrFeO
- Ordering and multiple phase transitions in ultra-thin nickelate superlattices
- Renormalization of effective interactions in a negative charge-transfer insulator
- Electronic structure of the SrTiO/LaAlO interface revealed by resonant soft x-ray scattering