Anomalous Hall effect and electronic correlation in a spin-reoriented kagome antiferromagnet LuFe 6 Sn 6

The kagome lattice system has been identified as a fertile ground for the emergence of a number of new quantum states, including superconductivity, quantum spin liquids, and topological electronic states. This has attracted significant interest within the field of condensed matter physics. Here, we...

Ausführliche Beschreibung

Gespeichert in:
Bibliographische Detailangaben
Veröffentlicht in:Chinese physics B 2024-09, Vol.33 (10), p.107507
Hauptverfasser: Lyu 吕, Meng 孟, Liu 刘, Yang 洋, Zhang 张, Shen 伸, Liu 刘, Junyan 俊艳, Yang 杨, Jinying 金颖, Wang 王, Yibo 一博, Feng 冯, Yiting 乙婷, Dong 董, Xuebin 学斌, Wang 王, Binbin 彬彬, Wei 魏, Hongxiang 红祥, Liu 刘, Enke 恩克
Format: Artikel
Sprache:eng
Online-Zugang:Volltext
Tags: Tag hinzufügen
Keine Tags, Fügen Sie den ersten Tag hinzu!
Beschreibung
Zusammenfassung:The kagome lattice system has been identified as a fertile ground for the emergence of a number of new quantum states, including superconductivity, quantum spin liquids, and topological electronic states. This has attracted significant interest within the field of condensed matter physics. Here, we present the observation of an anomalous Hall effect in an iron-based kagome antiferromagnet LuFe 6 Sn 6 , which implies a non-zero Berry curvature in this compound. By means of extensive magnetic measurements, a high Neel temperature, T N = 552 K, and a spin reorientation behavior were identified and a simple temperature-field phase diagram was constructed. Furthermore, this compound was found to exhibit a large Sommerfeld coefficient of γ = 87 mJ⋅mol −1 ⋅K −2 , suggesting the presence of a strong electronic correlation effect. Our research indicates that LuFe 6 Sn 6 is an intriguing compound that may exhibit magnetism, strong correlation, and topological states.
ISSN:1674-1056
2058-3834
DOI:10.1088/1674-1056/ad6f93