Please use this identifier to cite or link to this item: http://nopr.niscpr.res.in/handle/123456789/67181
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dc.contributor.authorDev, Jai-
dc.contributor.authorKumar Karn, Navneet-
dc.contributor.authorPal Singh, Surinder-
dc.contributor.authorKumar Shukla, Ajay-
dc.contributor.authorKushwaha, Pallavi-
dc.date.accessioned2026-01-23T10:43:50Z-
dc.date.available2026-01-23T10:43:50Z-
dc.date.issued2025-10-
dc.identifier.issn0975-1017 (Online) ; 0971-4588 (Print)-
dc.identifier.urihttp://nopr.niscpr.res.in/handle/123456789/67181-
dc.description655-662en_US
dc.description.abstractThe realization of advanced spintronic phenomena in bulk materials offers a robust alternative to complex thin-film heterostructures. This study investigates the low-temperature magnetic and magneto-transport properties of bulk singlecrystal MnZnSb, a ferromagnet with a Curie temperature (TC) of ~315 K. Comprehensive characterization reveals a complex magnetic ground state, defined by the coexistence of ferromagnetic (FM) clusters within an antiferromagnetic (AFM) or weak ferrimagnetic (WFRI) matrix. This state, stabilized by intrinsic features such as antisite disorder and kinetic arrest, creates a network of internal magnetic interfaces. Consequently, the material exhibits a pronounced spin-valve-like magnetoresistance (SVMR), an effect exceptionally rare in bulk systems, driven by spin-dependent scattering across these interfaces. Concurrently, we uncover a significant topological Hall effect (THE), with a topological Hall resistivity (𝜌􀯑􀯒 􀯍 ) of ~440 nΩ-cm at 5 K, contradicting earlier reports of its absence. The SVMR and THE are presented as complementary transport signatures of the non-trivial spin textures arising from the material's intrinsic magnetic inhomogeneities. These findings demonstrate that complex, heterostructure-like spintronic functionalities can emerge from phase competition in a single bulk material, opening new avenues for device design.en_US
dc.language.isoenen_US
dc.publisherNIScPR-CSIR,Indiaen_US
dc.sourceIJEMS Vol.32(05) Octoberen_US
dc.subjectAsymmetric magnetoresistanceen_US
dc.subjectInterface magnetismen_US
dc.subjectKinectic Arresten_US
dc.subjectTopological Hall Effecten_US
dc.titleAsymmetric Magnetoresistance and Topological Hall Effect in MnZnSb single crystalen_US
dc.typeArticleen_US
dc.identifier.doihttps://doi.org/10.56042/ijems.v32i05.22480en_US
Appears in Collections:IJEMS Vol.32(05) October

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