First-principles study of magnetism, structure and chemical order in small FeRh alloy clusters
Junais Habeeb Mokkath, G. M. Pastor

TL;DR
This study uses density-functional theory to explore how size, composition, and structure influence the magnetic, electronic, and chemical properties of small FeRh clusters with up to 8 atoms, revealing ferromagnetic order and composition-dependent magnetic moments.
Contribution
It provides a comprehensive first-principles analysis of the structural and magnetic properties of small FeRh clusters across all compositions, highlighting the effects of doping and size on magnetism.
Findings
All clusters exhibit ferromagnetic-like order.
Magnetic moments per atom increase with Fe content, nearly linearly.
Rh doping enhances local Fe magnetic moments beyond 3 μB.
Abstract
The structural, electronic and magnetic properties of small clusters having atoms are studied in the framework of a generalized-gradient approximation to density-functional theory. The correlation between structure, chemical order, and magnetic behavior is analyzed as a function of size and composition. For a thorough sampling of all cluster topologies has been performed, while for N = 7 and 8 only a few representative topologies are considered. In all cases the entire concentration range is systematically investigated. All the clusters show ferromagnetic-like order in the optimized structures. As a result, the average magnetic moment per atom increases monotonously, which is almost linear over a wide range of concentration with Fe content. A remarkable enhancement of the local Fe moments beyond 3 is observed…
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Taxonomy
TopicsMagnetic Properties of Alloys · Magnetic properties of thin films
