An inelastic neutron scattering investigation of holmium orthoferrite

Author:

Stewart G AORCID,Iles G NORCID,Mole R A,Yamani Z

Abstract

Abstract The inelastic neutron scattering spectra recorded in this study and elsewhere provide a useful set of crystal-field (CF) energy levels for the ground J = 6 term of Ho3+ in HoFeO3. The resolution of the low-energy, temperature-dependent pseudo-quadrupole ground state splitting and magnon peaks is consistent with the self-ordering of the Ho3+ sublattice at T Ho ∼ 8–10 K and supports earlier electron spin resonance investigations of the Ho3+ magnon behaviour. Systematic analysis of the grouped singlet CF levels of Ho3: HoFeO3, in conjunction with the CF Kramers doublet levels of the neighbouring Er3+: ErFeO3, has yielded possible sets of CF parameters for the two systems.

Publisher

IOP Publishing

Subject

Condensed Matter Physics,General Materials Science

Reference25 articles.

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2. A single-crystal Mössbauer study of spin reorientations in the multi-ferroic HoFeO3;Ryan;IEEE Trans. Magn.,2017

3. Electrical and magnetic properties of some rare earth orthoferrites (RFeO3 where R = Y, Ho, Er) systems;Bambzai;Integr. Ferroelectr.,2014

4. Magnetic and hyperfine interactions in HoFe1−xCrxO3 (0 < × < 1) compounds;Kotnana;J. Magn. Magn. Mater.,2017

5. Single crystal growth, magnetic properties and Schottky anomaly of HoFeO3 orthoferrite;Shao;J. Cryst. Growth,2011

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