Gong Dongliang, Yang Junyi, Zhang Shu, Pandey Shashi, Cui Dapeng, Ruff Jacob P C, Horak Lukas, Karapetrova Evguenia, Kim Jong-Woo, Ryan Philip J, Hao Lin, Zhang Yang, Liu Jian
Department of Physics and Astronomy, University of Tennessee, Knoxville, TN, 37996, USA.
Key Laboratory of Applied Superconductivity, Institute of Electrical Engineering, Chinese Academy of Sciences, Beijing, 100190, People's Republic of China.
Nat Commun. 2025 Mar 25;16(1):2888. doi: 10.1038/s41467-025-58020-0.
A large anomalous Nernst effect is essential for thermoelectric energy-harvesting in the transverse geometry without external magnetic field. It's often connected with anomalous Hall effect, especially when electronic Berry curvature is believed to be the driving force. This approach implicitly assumes the same symmetry for the Nernst and Hall coefficients, which is however not necessarily true. Here we report a large anomalous Nernst effect in antiferromagnetic SrIrSnO that defies the antisymmetric constraint on the anomalous Hall effect imposed by the Onsager reciprocal relation. The observed spontaneous Nernst thermopower quickly reaches the sub-μV/K level below the Néel transition around 250 K, which is comparable with many topological antiferromagnetic semimetals and far excels other magnetic oxides. Our analysis indicates that the coexistence of significant symmetric and antisymmetric contributions plays a key role, pointing to the importance of extracting both contributions and a new pathway to enhanced anomalous Nernst effect for transverse thermoelectrics.
在无外磁场的横向几何结构中,大的反常能斯特效应对于热电能量收集至关重要。它通常与反常霍尔效应相关联,特别是当电子贝里曲率被认为是驱动力时。这种方法隐含地假设能斯特系数和霍尔系数具有相同的对称性,然而这不一定正确。在此,我们报道了反铁磁体SrIrSnO中存在大的反常能斯特效应,这违背了昂萨格互易关系对反常霍尔效应施加的反对称约束。在250 K左右的奈尔转变温度以下,观测到的自发能斯特热功率迅速达到亚微伏每开尔文水平,这与许多拓扑反铁磁半金属相当,且远优于其他磁性氧化物。我们的分析表明,显著的对称和反对称贡献共存起着关键作用,这指出了提取这两种贡献的重要性以及增强横向热电的反常能斯特效应的新途径。