Effect of Fe and Co substitution on martensitic stability, elastic, electronic and magnetic properties of Mn$_2$NiGa: insights from \textit{ab initio} calculations
Ashis Kundu, Sheuly Ghosh, Subhradip Ghosh

TL;DR
This study uses first-principles calculations to explore how Fe and Co substitutions affect the phase stability, magnetic, and electronic properties of Mn$_2$NiGa, revealing potential for designing advanced magnetic materials.
Contribution
It provides new insights into how Fe and Co substitutions influence martensitic stability and magnetic properties in Mn$_2$NiGa through detailed electronic and mechanical analysis.
Findings
Martensitic phase destabilizes with increased Fe/Co substitution.
Substitutions enhance magnetic moments and Curie temperatures.
High spin-polarization achieved with complete substitution.
Abstract
We investigate the effects of Fe and Co substitutions on the phase stability of the martensitic phase, mechanical, electronic and magnetic properties of magnetic shape memory system MnNiGa by first-principles Density functional theory(DFT) calculations. The evolution of these aspects upon substitution of Fe and Co at different crystallographic sites are investigated by computing the electronic structure, mechanical properties and magnetic exchange parameters. We find that the martensitic phase of MnNiGa gradually de-stabilises with increase in concentration of Fe/Co due to the weakening of the minority spin hybridisation of Ni and Mn atoms occupying crystallographically equivalent sites. The interplay between relative structural stability and the compositional changes are understood from the variations in the elastic modulii and electronic structures. We find that the…
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