TY  - CONF
AU  - Stunault, A.
AU  - Perßon, J.
AU  - Schmalzl, K.
AU  - Meven, M.
AU  - Dutta, Rajesh
AU  - Nandi, S.
AU  - Jana, S.
AU  - RAI, V.
AU  - Schmidt, W.
TI  - Magnetic and Transport Properties of Mn3X (X = Ge, Sn) WeylSemimetal
M1  - FZJ-2025-04167
PY  - 2025
AB  - Topological quantum materials have attracted enormous attention since their discovery due to theobserved anomalous transport properties, which originate from the non-zero Berry curvature. Mn3Xcompounds show interesting physical properties like Anomalous Hall Effect (AHE), Planar Hall effect(PHE), chiral magnetic effect, and non-local transport properties due to non-vanishing Berryflux emerging from the Weyl points [1]. It is widely believed that the magnetic structure and Weylproperties are intimately connected.Nevertheless, the interpretation of negative longitudinal magnetoresistance (LMR), AHE, and PHEin Mn₃X compounds—particularly their connection to the chiral magnetic effect—remains a subjectof ongoing debate. This presentation provides a concise overview of current insights into these phenomena,with a focus on experimental observations in Mn₃Sn and Mn₃Ge using neutron diffractionand complementary physical property measurement systems.References:[1] S. Nakatsuji, N. Kiyohara and T. Higo, Nature (London) 527, 212 (2015) .[2] Y. Song, Y. Hao, and S. Wang, Phys. Rev. B 101, 144422 (2020)[3] A. K. Nayak, J. E. Fischer, Y. Sun, B. Yan, J. Karel, A. C. Komarek, C. Shekhar, N. Kumar, W.Schnelle, J. Kübler, C. Felser, and S. S. P. Parkin, Sci. Adv. 2, e1501870 (2016)[4] N. Kumar, S. N. Guin, C. Felser, and C. Shekhar, Phys. Rev. B 98, 041103(R) (2018)
T2  - JCNS Workshop 2025, Trends and Perspectives in Neutron Scattering. Quantum Materials: Theory and Experiments
CY  - 7 Oct 2025 - 9 Oct 2025, Evangelische Akademie Tutzing (Germany)
Y2  - 7 Oct 2025 - 9 Oct 2025
M2  - Evangelische Akademie Tutzing, Germany
LB  - PUB:(DE-HGF)24
UR  - https://juser.fz-juelich.de/record/1047233
ER  -