CoRuVSi: A potential candidate for spin semimetal with promising spintronic and thermoelectric properties
Jadupati Nag, R. Venkatesh, Ajay Jha, Plamen Stamenov, P. D. Babu,, Aftab Alam, and K. G. Suresh

TL;DR
This study identifies CoRuVSi as a spin semimetal with unique electronic, magnetic, and thermoelectric properties, combining experimental and theoretical insights to highlight its potential for spintronic and thermoelectric applications.
Contribution
The paper reports the discovery and detailed characterization of CoRuVSi as a new spin semimetal with topological features and promising thermoelectric properties, supported by experimental data and ab-initio simulations.
Findings
CoRuVSi exhibits spin-polarized semimetallic band structure.
It shows high thermopower and significant spin polarization.
The material has topologically non-trivial electronic features.
Abstract
Based on our experimental and theoretical studies, we report the identification of the quaternary Heusler alloy, CoRuVSi as a new member of the recently discovered spin semimetals class. Spin polarised semimetals possess a unique band structure in which one of the spin bands shows semimetallic nature, while the other shows semiconducting/insulating nature. Our findings show that CoRuVSi possesses interesting spintronic and thermoelectric properties. Magnetization data reveal a weak ferri-/antiferro magnetic ordering at low temperatures, with only a very small moment 0.13 /f.u., attributed to the disorder. Transport results provide strong evidence of semimetallicity dominated by two-band conduction, while magnetoresistance data show a non-saturating, linear, positive, magnetoresistance. Spin polarization measurements using point-contact Andreev reflection spectra reveal a…
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Taxonomy
TopicsHeusler alloys: electronic and magnetic properties
