Weak itinerant magnetic phases of La2Ni7
arXiv:2203.06341 · doi:10.1103/PhysRevB.106.075118
Abstract
La2Ni7 is an intermetallic compound that is thought to have itinerant magnetism with a small moment ordering below 65 K. A recent study of single crystal samples by Ribeiro et. al. [Phys. Rev. B 105, 014412 (2022)] determined detailed anisotropic H-T phase diagrams and revealed three zero-field magnetic phase transitions at T1 ~ 61.0 K, T2 ~ 56.5K, and T3 ~ 42 K. In that study only the highest temperature phase is shown to have a clear ferromagnetic component. Here we present a single crystal neutron diffraction study determining the propagation vector and magnetic moment direction of the three magnetically ordered phases, two incommensurate and one commensurate, as a function of temperature. The higher temperature phases have similar, incommensurate propagation vectors, but with different ordered moment directions. At lower temperatures the magnetic order becomes commensurate with magnetic moments along the c direction as part of a first-order magnetic phase transition. We find that the low-temperature commensurate magnetic order is consistent with a proposal from earlier DFT calculations.
7 pages, 7 figures Updated magnetic moment size based on data. Discussion is expanded to discuss origin of multiple phase transitions. Several other small changes/additions made throughout the text
References in corpus (10)
- Quantum Criticality in Heavy Fermion Metals
- Superconductivity on the border of weak itinerant ferromagnetism in UCoGe
- Pressure induced superconductivity on the border of magnetic order in MnP
- Ferromagnetic Quantum Critical Point Avoided by the Appearance of Another Magnetic Phase in LaCrGe under Pressure
- Formation of short-range magnetic order and avoided ferromagnetic quantum criticality in pressurized LaCrGe
- Effect of substitution La by Mg on electrochemical and electronic properties in LaMgNi alloys: a combined experimental and ab initio studies
- Avoided ferromagnetic quantum critical point in pressurized LaCoGe
- Effect of Gd and Co content on electrochemical and electronic properties of LaMgNi alloys: a combined experimental and first-principles study
- Antiferromagnetic Stacking of Ferromagnetic Layers and Doping Controlled Phase Competition in CaSrCoAs
- Small moment antiferromagnetic ordering in single crystalline La2Ni7