Neutron powder diffraction study of the magnetic structure of EuZrO3
Author:
Publisher
IOP Publishing
Subject
Condensed Matter Physics,General Materials Science
Link
http://stacks.iop.org/0953-8984/26/i=9/a=095401/pdf
Reference22 articles.
1. A strong ferroelectric ferromagnet created by means of spin–lattice coupling
2. Coupling between magnetism and dielectric properties in quantum paraelectricEuTiO3
3. Magnetic Structure of EuTiO3
4. Magnetic and Electric Phase Control in EpitaxialEuTiO3from First Principles
5. Large off-diagonal magnetoelectric coupling in the quantum paraelectric antiferromagnetEuTiO3
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1. High energy γ-rays inelastic scattering studies and DFT strategies of divalent high-Z perovskites EuTMO3 (TM = Ti and Zr);Radiation Physics and Chemistry;2023-07
2. Crystal structure and magnetic properties of EuZrO3 solid solutions;Journal of Materials Chemistry C;2023
3. Reversible Valence Transition Eu3+ → Eu2+ → Eu3+ in $${\text{Eu}}_{{{\text{1}}-x}}^{{{\text{2 + }}}}{\text{Eu}}_{x}^{{3 + }}M{{{\text{O}}}_{{{\text{3}} + x/{\text{2}}}}}$$ (M = Ti, Zr, Hf): An Analysis of XAFS and XRD Data;Crystallography Reports;2022-12
4. Benchmark for Ab Initio Prediction of Magnetic Structures Based on Cluster-Multipole Theory;Physical Review X;2021-02-16
5. Symmetry analysis of current-induced switching of antiferromagnets;Physical Review B;2018-12-28
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