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Autori principali: Yang, Tsung-Han, Gao, Shang, Zhang, Yuanpeng, Olds, Daniel, Meier, William R., Stone, Matthew B., Sales, Brian C., Christianson, Andrew D., Zhang, Qiang
Natura: Preprint
Pubblicazione: 2024
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Accesso online:https://arxiv.org/abs/2411.19464
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author Yang, Tsung-Han
Gao, Shang
Zhang, Yuanpeng
Olds, Daniel
Meier, William R.
Stone, Matthew B.
Sales, Brian C.
Christianson, Andrew D.
Zhang, Qiang
author_facet Yang, Tsung-Han
Gao, Shang
Zhang, Yuanpeng
Olds, Daniel
Meier, William R.
Stone, Matthew B.
Sales, Brian C.
Christianson, Andrew D.
Zhang, Qiang
contents CoSn and FeSn, two kagome-lattice metals, have recently attracted significant attention as hosts of electronic flat bands and emergent physical properties. However, current understandings of their physical properties are limited to the knowledge of the average crystal structure. Here, we report the Fe-doping induced co-emergence of the antiferromagentic (AFM) order and local symmetry breaking in (Co0.45Fe0.55)Sn. Rietveld analysis on the neutron and synchrotron x-ray diffraction data indicates A-type antiferromagnetic order with the moment pointing perpendicular to the kagome layers, associated with the anomaly in the MSn(1)2Sn(2)4 (M = Co/Fe) octahedral distortion and the lattice constant c. Reverse Monte Carlo (RMC) modeling of the synchrotron x-ray total scattering results captured the subtle local orthorhombic distortion involving off-axis displacements of Sn2. Our results indicate that the stable hexagonal lattice above TN becomes unstable once the A-type AFM order is formed below TN. We argue that the local symmetry breaking has a magnetic origin and is driven by the out-of-plane magnetic exchange coupling. Our study provides comprehensive information on the crystal structure in both long-range scale and local scale, unveiling unique coupling between AFM order, octahedral distortion, and hidden local symmetry breaking.
format Preprint
id arxiv_https___arxiv_org_abs_2411_19464
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Simultaneous development of antiferromagnetism and local symmetry breaking in a kagome magnet (Co$_{0.45}$Fe$_{0.55}$)Sn
Yang, Tsung-Han
Gao, Shang
Zhang, Yuanpeng
Olds, Daniel
Meier, William R.
Stone, Matthew B.
Sales, Brian C.
Christianson, Andrew D.
Zhang, Qiang
Strongly Correlated Electrons
CoSn and FeSn, two kagome-lattice metals, have recently attracted significant attention as hosts of electronic flat bands and emergent physical properties. However, current understandings of their physical properties are limited to the knowledge of the average crystal structure. Here, we report the Fe-doping induced co-emergence of the antiferromagentic (AFM) order and local symmetry breaking in (Co0.45Fe0.55)Sn. Rietveld analysis on the neutron and synchrotron x-ray diffraction data indicates A-type antiferromagnetic order with the moment pointing perpendicular to the kagome layers, associated with the anomaly in the MSn(1)2Sn(2)4 (M = Co/Fe) octahedral distortion and the lattice constant c. Reverse Monte Carlo (RMC) modeling of the synchrotron x-ray total scattering results captured the subtle local orthorhombic distortion involving off-axis displacements of Sn2. Our results indicate that the stable hexagonal lattice above TN becomes unstable once the A-type AFM order is formed below TN. We argue that the local symmetry breaking has a magnetic origin and is driven by the out-of-plane magnetic exchange coupling. Our study provides comprehensive information on the crystal structure in both long-range scale and local scale, unveiling unique coupling between AFM order, octahedral distortion, and hidden local symmetry breaking.
title Simultaneous development of antiferromagnetism and local symmetry breaking in a kagome magnet (Co$_{0.45}$Fe$_{0.55}$)Sn
topic Strongly Correlated Electrons
url https://arxiv.org/abs/2411.19464