Influence of frustration on a d=3 diluted antiferromagnet: FexZn1-xF2

Abstract

The influence of a frustrated bond on the magnetic properties of a d=3 uniaxial (Ising) b.c.c. diluted antiferromagnet, with emphasis in the compound FexZn1-xF2, is investigated by a local mean-field numerical simulation. In particular we find that the initial drop of the saturation staggered magnetization (MS) with concentration follows a percolation-like phenomenon characterized by an exponent βp. For the frustrated samples, however, this regime is followed by a second one identified by a ``long tail" effect such that MS is zero only at the percolation threshold. Our numerical data also confirms a spin-glass phase near this threshold.

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