paper

Absence of magnetic long range order in YCrSbO: bond-disorder induced magnetic frustration in a ferromagnetic pyrochlore

arXiv:1703.02097 · doi:10.1103/PhysRevB.96.094438

Abstract

The consequences of nonmagnetic-ion dilution for the pyrochlore family Y()O ( = magnetic ion, = nonmagnetic ion) have been investigated. As a first step, we experimentally examine the magnetic properties of YCrSbO ( = 0.5), in which the magnetic sites (Cr) are percolative. Although the effective Cr-Cr spin exchange is ferromagnetic, as evidenced by a positive Curie-Weiss temperature, = 20.1(6) K, our high-resolution neutron powder diffraction measurements detect no sign of magnetic long range order down to 2 K. In order to understand our observations, we performed numerical simulations to study the bond-disorder introduced by the ionic size mismatch between and . Based on these simulations, bond-disorder ( 0.23) percolates well ahead of site-disorder ( 0.61). This model successfully reproduces the critical region (0.2 < < 0.25) for the Néel to spin glass phase transition in Zn(CrGa)O, where the Cr/Ga-sublattice forms the same corner-sharing tetrahedral network as the -sublattice in Y()O, and the rapid drop in magnetically ordered moment in the Néel phase [Lee , Phys. Rev. B 77, 014405 (2008)]. Our study stresses the nonnegligible role of bond-disorder on magnetic frustration, even in ferromagnets.