Citation

BibTex format

@article{Bhattacharya:2025:10.1002/adfm.202424841,
author = {Bhattacharya, A and Sreeparvathy, PC and Ahmed, A and Kurebayashi, D and Tretiakov, OA and Satpati, B and DuttaGupta, S and Alam, A and Das, I},
doi = {10.1002/adfm.202424841},
journal = {Advanced Functional Materials},
title = {Giant Topological Hall Effect in Magnetic Weyl Metal Mn2Pd0.5Ir0.5Sn},
url = {http://dx.doi.org/10.1002/adfm.202424841},
volume = {35},
year = {2025}
}

RIS format (EndNote, RefMan)

TY  - JOUR
AB - The synergy between real and reciprocal space topology is anticipated to yield a diverse array of topological properties in quantum materials. This pursuit is addressed by achieving topologically safeguarded magnetic order in novel Weyl metallic Heusler alloy, Mn<inf>2</inf>Pd<inf>0.5</inf>Ir<inf>0.5</inf>Sn. The system possesses non-centrosymmetric D<inf>2d</inf> crystal symmetry with notable spin-orbit coupling effects. The first principles calculations confirm the topological non-trivial nature of band structure, including 42 pairs of Weyl nodes at/near the Fermi level, offering deeper insights into the observed anomalous Hall effect mediated by intrinsic Berry curvature. A unique canted magnetic ordering facilitates such rich topological features, manifesting through an exceptionally large topological Hall effect at low fields. The latter is sustained even at room temperature and compared with other known topological magnetic materials. Detailed micromagnetic simulations demonstrate the possible existence of an antiskyrmion lattice. These results underscore the D<inf>2d</inf> Heusler magnets as a possible platform to explore the intricate interplay of non-trivial topology across real and reciprocal spaces to leverage a plethora of emergent properties for spintronic applications.
AU - Bhattacharya,A
AU - Sreeparvathy,PC
AU - Ahmed,A
AU - Kurebayashi,D
AU - Tretiakov,OA
AU - Satpati,B
AU - DuttaGupta,S
AU - Alam,A
AU - Das,I
DO - 10.1002/adfm.202424841
PY - 2025///
SN - 1616-301X
TI - Giant Topological Hall Effect in Magnetic Weyl Metal Mn2Pd0.5Ir0.5Sn
T2 - Advanced Functional Materials
UR - http://dx.doi.org/10.1002/adfm.202424841
VL - 35
ER -