paper

Cluster spin-glass behaviour and memory effect in CrFeGa

arXiv:1810.03890 · doi:10.1103/PhysRevB.98.144436

Abstract

We report the structural, static, and dynamic properties of CrFeGa by means of powder x-ray diffraction, magnetization, heat capacity, magnetic relaxation, and magnetic memory effect measurements. DC magnetization and AC susceptibility studies reveal a spin-glass transition at around ~K. An intermediate value of the relative shift in freezing temperature , obtained from the AC susceptibility data reflects the formation of cluster spin-glass states. The frequency dependence of is also analyzed within the framework of dynamic scaling laws. The analysis using power law yields a time constant for a single spin flip ~s and critical exponent . On the other hand, the Vogel-Fulcher (VF) law yields the time constant for a single spin flip ~s, VF temperature ~K, and an activation energy ~K. The value of and along with a non-zero value of provide further evidence for the cluster spin-glass behaviour. The magnetic field dependent follows the de Almeida-Thouless line with a non-mean-field type instability, reflecting either a different universality class or strong anisotropy in the spin system. A detailed non-equilibrium dynamics study via relaxation and memory effect experiments demonstrates striking memory effects. All the above observations render a cluster spin-glass behaviour which is triggered by magnetic frustration due to competing antiferromagnetic and ferromagnetic interactions and magnetic site disorder. Moreover, the asymmetric response of magnetic relaxation with respect to the change in temperature, below can be explained by the hierarchical model.

Phys. Rev. B (Accepted, 2018) 11 pages, 10 figures, 1 table