凝聚态物理
能斯特效应
塞贝克系数
抗血小板
磁电阻
电阻率和电导率
热电效应
材料科学
铁磁性
反铁磁性
霍尔效应
磁场
能斯特方程
物理
纳米技术
热力学
电极
氮化物
量子力学
图层(电子)
作者
Sunil Gangwar,Sonika Bagga,C. S. Yadav
标识
DOI:10.1088/1361-648x/ad540c
摘要
Abstract We explore the magnetotransport and thermoelectric (Seebeck and Nernst coefficients) properties of Mn 3 SnC, an antiperovskite magnetic Nodal line semimetal. Mn 3 SnC shows paramagnetic (PM) to concurrent antiferromagnetic (AFM)/ferromagnetic (FM) transition at T ∼ 286 K. The electrical resistivity and Seebeck coefficient indicate the importance of electron–magnon scattering in the concurrent AFM/FM regime. We observed a large positive magnetoresistance (MR) of ∼8.2 at 8 T field near magnetic transition, in the otherwise negative MR behaviour for low temperatures. The electrical resistivity and MR show a weak thermal hysteresis around the boundary of transition temperature and the width of hysteresis decreases as magnetic field increases. Interestingly the Hall and Seebeck coefficients change sign from positive to negative below the transition temperature, highlighting the different scattering for holes and electrons in this multi-band system. The Seebeck and Nernst signal exhibit two sharp anomalies; one at the transition temperature and another at ∼50 K. The anomaly at magnetic transition in the Nernst signal disappear at 8 T magnetic field, owing to the reduction of magnetic fluctuation. A pseudo-gap near the Fermi level produces an upturn with a broad minimum in the Seebeck signal.
科研通智能强力驱动
Strongly Powered by AbleSci AI