Magnetic critical phenomena and low temperature re-entrant spin-glass features of Al$_2$MnFe Heusler alloy
Abhinav Kumar Khorwal, Sujoy Saha, Mukesh Verma, Lalita Saini, Suvigya, Kaushik, Yugandhar Bitla, and Ajit K Patra

TL;DR
This study investigates the magnetic phase transitions, critical behavior, and re-entrant spin-glass features of Al$_2$MnFe Heusler alloy, revealing a second-order ferromagnetic transition, spin-glass behavior at low temperature, and notable magnetocaloric effects.
Contribution
It provides a comprehensive analysis of the magnetic critical phenomena and spin-glass features in Al$_2$MnFe Heusler alloy, including critical exponents and magnetocaloric properties, which were not previously characterized in detail.
Findings
Second-order paramagnetic to ferromagnetic transition at ~122.9 K
Critical exponents consistent with 3D-Heisenberg ferromagnet
Re-entrant spin-glass behavior confirmed by AC susceptibility analysis
Abstract
A detailed investigation of the structural and magnetic properties, including magnetocaloric effect, re-entrant spin-glass behavior at low temperature, and critical behavior in polycrystalline AlMnFe Heusler alloy is reported. The prepared alloy crystallizes in a cubic CsCl-type crystal structure with Pm-3m space group. The temperature-dependent magnetization data reveals a second-order paramagnetic to ferromagnetic phase transition ( 122.9 K), which is further supported by the analysis of the magnetocaloric effect. The isothermal magnetization loops show a soft ferromagnetic behavior of the studied alloy and also reveal an itinerant character of the underlying exchange interactions. In order to understand the nature of magnetic interactions, the critical exponents for spontaneous magnetization, initial magnetic susceptibility, and critical MH isotherm are determined using…
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Taxonomy
TopicsHeusler alloys: electronic and magnetic properties
