Disorder mediated fully compensated ferrimagnetic spin-gapless semiconducting behaviour in Cr3Al Heusler alloy
Reshna Elsa Philip, Pooja Vyas, Nikhil Joseph Joy, Sandip Kumar Kuila, Sonia Beniwal, Akshata Magar, Dinesh Kumar Shukla, Partha Pratim Jana, Amit Kumar, Aftab Alam, Jayakumar Balakrishnan, and Soham Manni

TL;DR
This study demonstrates that the chemically disordered Cr3Al Heusler alloy exhibits both spin-gapless semiconducting behavior and fully compensated ferrimagnetism, making it promising for high-temperature spintronic applications.
Contribution
It is the first experimental verification of an A2-disordered Heusler alloy showing both SGS transport and fully compensated ferrimagnetism.
Findings
Cr3Al exhibits SGS transport with low Seebeck coefficients.
Cr3Al maintains a robust ferrimagnetic order despite chemical disorder.
First-principles calculations confirm SGS behavior in disordered structure.
Abstract
Spin-gapless semiconductors (SGSs) that simultaneously host fully compensated ferrimagnetism are highly sought for energy-efficient and stray-field-free spintronic technologies, yet their realization in chemically disordered systems has remained elusive. Here, we demonstrate that the binary Heusler alloy Cr3Al despite adopting a fully A2-disordered structure exhibits a rare coexistence of SGS transport and a fully compensated ferrimagnetic (FCF) ground state. Single-crystalline and polycrystalline Cr3Al samples were synthesized, and comprehensive structural analyses using single crystal XRD, synchrotron powder XRD, and neutron powder diffraction reveal complete Cr/Al site mixing. Remarkably, this chemical disorder does not disrupt magnetic order; instead, magnetization, X-ray magnetic circular dichroism (XMCD), and temperature-dependent neutron diffraction establish a robust compensated…
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