Abstract We present the results of a finite-element micromagnetic model of 30 nm to 300 nm greigite (Fe3S4) grains with a variety of equant morphologies. This grain size range covers… Click to show full abstract
Abstract We present the results of a finite-element micromagnetic model of 30 nm to 300 nm greigite (Fe3S4) grains with a variety of equant morphologies. This grain size range covers the magnetic single-domain (SD) to pseudo single-domain (PSD) transition, and possibly also the PSD to multi-domain (MD) transition. The SD–PSD threshold d 0 is determined to be 50 nm ≤ d 0 ≤ 56 nm depending on grain shape. The nudged elastic-band method was used to determine the room temperature energy barriers between stable states and thus the blocking volumes. It is found that, in the absence of interparticle magnetostatic interactions, the magnetisation of equant SD greigite is not stable on a geological scale and only PSD grains ≥ 70 nm can be expected to carry a stable magnetisation over billion-year timescales, i.e., all non-interacting SD particles are essentially superparamagnetic. We further identify a mechanism for the PSD to multi-domain (MD) transition, which is of a continuous nature from PSD nucleation up to 300 nm , when structures typical of MD behaviour like closure domains begin to form.
               
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