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Giant Anomalous Nernst Angle Induced by Berry Curvature in Layered Itinerant Ferromagnets
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作者 Yu-Ting Qian Jiu-Yun Zhang +7 位作者 Xiang-Yu Bi Peng Chen Hong-Zi Cao Wei-Feng Xu Zhong-Yuan Liu Kun Zhai Hong-Tao Yuan Jun-Wei Huang 《Chinese Physics Letters》 2025年第9期268-304,共37页
Berry curvature describes the intrinsic geometric property of electronic band structure,crucial for governing emergent transport phenomena.As a typical Berry-curvature-related property,the anomalous Nernst effect prob... Berry curvature describes the intrinsic geometric property of electronic band structure,crucial for governing emergent transport phenomena.As a typical Berry-curvature-related property,the anomalous Nernst effect probes local Berry curvature near the Fermi surface,whereas the anomalous Hall effect integrates contributions across all occupied states.Thus,the anomalous Nernst effect is a superior probe for detecting subtle evolution of Berry curvature near the Fermi level;however,their relation remains elusive.Here,we demonstrate giant anomalous Nernst angles induced by Berry curvature in layered itinerant ferromagnets Fe_(3)GaTe_(2)and Fe_(5)GeTe_(2).Their maximum values(≈0.33 for Fe_(3)GaTe_(2)and≈0.41 for Fe_(5)GeTe_(2))are one order of magnitude larger than those of traditional ferromagnets(θ_(AN)^(max)<0.02).Scaling analysis of anomalous Hall effect in these two systems further suggests these giant angles originate from intrinsic Berry curvature.These findings indicate Berrycurvature-dominated regimes,and establish these materials for high-performance spin-caloritronic devices. 展开更多
关键词 anomalous hall effect giant anomalous nernst effect emergent transport phenomenaas detecting subtle evolution berry curvature anomalous nernst effect layered itinerant ferromagnets electronic band structurecrucial berry curvature
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