Magnetic ground state and excitations in mixed 3$d$-4$d$ quasi-1D spin-chain oxide Sr$_3$NiRhO$_6$
A. Jain, D. T. Adroja, S. Rayaprol, A. D. Hillier, W. Kockelmann, S., M. Yusuf, and E. V. Sampathkumaran

TL;DR
This study investigates the magnetic ground state and excitations in the mixed 3d-4d quasi-1D spin-chain oxide Sr3NiRhO6 using muon spin rotation and neutron scattering, revealing long-range order and gapped excitations.
Contribution
It provides the first detailed characterization of the magnetic structure and excitations in Sr3NiRhO6, highlighting its quasi-1D magnetic behavior and the nature of its spin-wave spectrum.
Findings
Long-range magnetic order below 50 K confirmed by μSR.
Gapped quasi-1D magnetic excitations observed via inelastic neutron scattering.
Spin-wave spectrum fitted with ferromagnetic exchange and single ion anisotropy.
Abstract
Entanglement of spin and orbital degrees of freedom, via relativistic spin-orbit coupling, in 4 transition metal oxides can give rise to a variety of novel quantum phases. A previous study of mixed 3-4 quasi-1D spin-chain oxide SrNiRhO using the magnetization measurements by Mohapatra et al. [Phys. Rev. B 75, 214422 (2007)] revealed a partially disordered antiferromagnetic (PDA) structure below 50 K [Mohapatra et al, Phys. Rev. B 75, 214422 (2007)]. We here report the magnetic ground state and spin-wave excitations in SrNiRhO, using muon spin rotation and relaxation (SR), and neutron (elastic and inelastic) scattering techniques. Our neutron diffraction study reveals that in the magnetic structure of SrNiRhO, Rh and Ni spins are aligned ferromagnetically in a spin-chain, with moments along the crystallographic -axis. However,…
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Taxonomy
TopicsAdvanced Condensed Matter Physics · Magnetic and transport properties of perovskites and related materials · Physics of Superconductivity and Magnetism
