Morin-type transition in 5C pyrrhotite

Author:

Haines Charles R.S.1ORCID,Lampronti Giulio I.1,Klooster Wim T.2,Coles Simon J.2,Dutton Sian E.3,Carpenter Michael A.1

Affiliation:

1. Department of Earth Sciences, University of Cambridge, Cambridge, U.K.

2. U.K. National Crystallographic Service, Chemistry, Faculty of Natural and Environmental Sciences, University of Southampton, SO17 1BJ, U.K.

3. Department of Physics, University of Cambridge, Cambridge, U.K.

Abstract

Abstract We report the discovery of a low-temperature spin-flop transition in 5C pyrrhotite at ~155 K that is similar to those seen in hematite at 260 K and FeS (troilite) at 440 K. The 5C crystal was produced by annealing a 4C pyrrhotite crystal at 875 K to produce a change in the vacancy-ordering scheme that developed during cooling. The 5C structure is confirmed by single-crystal X-ray diffraction and the stoichiometry and homogeneity by electron microprobe and SEM BSE mapping. Resonant ultrasound spectroscopy (RUS), heat capacity, and magnetization measurements from room temperature down to 2 K are reported. The transition is marked by a steep change in elastic properties at the transition temperature, a peak in the heat capacity, and weak anomalies in measurements of magnetization. Magnetic hysteresis loops and comparison with the magnetic properties of 4C pyrrhotite suggest that the transition involves a change in orientation of moments between two different antiferromagnetic structures, perpendicular to the crystallographic c-axis at high temperatures and parallel to the crystal-lographic c-axis at low temperatures. The proposed structures are consistent with a group theoretical treatment that also predicts a first-order transition between the magnetic structures.

Publisher

Mineralogical Society of America

Subject

Geochemistry and Petrology,Geophysics

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