Sudden collapse of magnetic order in oxygen deficient nickelate films
arXiv:2010.08545 · doi:10.1103/PhysRevLett.126.187602
Abstract
Oxygen vacancies play a crucial role in the control of the electronic, magnetic, ionic, and transport properties of functional oxide perovskites. Rare earth nickelates (RENiO) have emerged over the years as a rich platform to study the interplay between the lattice, the electronic structure, and ordered magnetism. In this study, we investigate the evolution of the electronic and magnetic structure in thin films of RENiO, using a combination of X-ray absorption spectroscopy and imaging, resonant X-ray scattering, and extended multiplet ligand field theory modeling. We find that oxygen vacancies modify the electronic configuration within the Ni-O orbital manifolds, leading to a dramatic evolution of long-range electronic transport pathways despite the absence of nanoscale phase separation. Remarkably, magnetism is robust to substantial levels of carrier doping, and only a moderate weakening of the antiferromagnetic order parameter is observed, whereas the magnetic transition temperature is largely unchanged. Only at a certain point long-range magnetism is abruptly erased without an accompanying structural transition. We propose the progressive disruption of the 3D magnetic superexchange pathways upon introduction of point defects as the mechanism behind the sudden collapse of magnetic order in oxygen-deficient nickelates. Our work demonstrates that, unlike most other oxides, ordered magnetism in RENiO is mostly insensitive to carrier doping. The sudden collapse of ordered magnetism upon oxygen removal may provide a new mechanism for solid-state magneto-ionic switching and new applications in antiferromagnetic spintronics.
6 pages, 4 figures
References in corpus (8)
- Theory of Intertwined Orders in High Temperature Superconductors
- High Mobility in LaAlO3/SrTiO3 Heterostructures: Origin, Dimensionality and Perspectives
- Ground state oxygen holes and the metal-insulator transition in the negative charge transfer rare-earth nickelates
- Physics of ultrathin films and heterostructures of rare earth nickelates
- Phase Diagram of Infinite Layer Praseodymium Nickelate PrSrNiO Thin Films
- 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
- Complex magnetic order in nickelate slabs
Cited by in corpus (6)
- Absence of Charge Density Wave Order in the Infinite Layer Nickelates
- Antiferromagnetic metal phase in an electron-doped rare-earth nickelate
- Negative charge transfer energy in correlated compounds
- Coherent epitaxy of trilayer nickelate (Nd0.8Sr0.2)4Ni3O10 films by high-pressure magnetron sputtering
- Discovery of Giant Unit-Cell Super-Structure in the Infinite-Layer Nickelate PrNiO
- Emergence of interfacial magnetism in strongly-correlated nickelate-titanate superlattices