Approaching the Ground State of Frustrated A-site Spinels: A Combined Magnetization and Polarized Neutron Scattering Study
arXiv:1405.4694 · doi:10.1103/PhysRevB.89.174431
Abstract
We re-investigate the magnetically frustrated, {\it diamond-lattice-antiferromagnet} spinels FeAlO and MnAlO using magnetization measurements and diffuse scattering of polarized neutrons. In FeAlO, macroscopic measurements evidence a "cusp" in zero field-cooled susceptibility around 13~K. Dynamic magnetic susceptibility and {\it memory effect} experiments provide results that do not conform with a canonical spin-glass scenario in this material. Through polarized neutron scattering studies, absence of long-range magnetic order down to 4~K is confirmed in FeAlO. By modeling the powder averaged differential magnetic neutron scattering cross-section, we estimate that the spin-spin correlations in this compound extend up to the third nearest-neighbour shell. The estimated value of the Landé factor points towards orbital contributions from Fe. This is also supported by a Curie-Weiss analysis of the magnetic susceptibility. MnAlO, on the contrary, undergoes a magnetic phase transition into a long-range ordered state below 40~K, which is confirmed by macroscopic measurements and polarized neutron diffraction. However, the polarized neutron studies reveal the existence of prominent spin-fluctuations co-existing with long-range antiferromagnetic order. The magnetic diffuse intensity suggests a similar short range order as in FeAlO. Results of the present work supports the importance of spin-spin correlations in understanding magnetic response of frustrated magnets like -site spinels which have predominant short-range spin correlations reminiscent of the "spin liquid" state.
10 pages, 10 figures, double-column, accepted in Phys. Rev. B, 2014
References in corpus (1)
Cited by in corpus (7)
- Spin glass behavior in frustrated quantum spin system CuAl2O4 with a possible orbital liquid state
- Spin-orbiton and quantum criticality in FeSc2S4
- Revisiting the ground state of CoAlO: comparison to the conventional antiferromagnet MnAlO
- Spin Freezing in the Spin Liquid Compound FeAl2O4
- Dynamic Spin Fluctuations in the Frustrated A-site Spinel CuAl2O4
- Magnetic order and exchange couplings in the frustrated diamond lattice antiferromagnet MnScSe
- Line-Graph Approach to Spiral Spin Liquids