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Tunable Bifurcation of Magnetic Anisotropy and Bi-Oriented Antiferromagnetic Order in Kagome Metal GdTi3Bi4 by Jianfeng Guo,1,* Shiyu Zhu ,1,2,*,† Runnong Zhou ,1,2, Zhen Zhao,1,2 Xiaoli Dong ,1,2 Jinguang Cheng ,1,2 ing National Center for Condensed Matter Physics and Instit2School of Physical Sciences, University of Chi3Department of Physics and State Key Labora instant download

  • SKU: EBN-238337880
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Instant download (eBook) Tunable Bifurcation of Magnetic Anisotropy and Bi-Oriented Antiferromagnetic Order in Kagome Metal GdTi3Bi4 after payment.
Authors:Jianfeng Guo,1,* Shiyu Zhu ,1,2,*,† Runnong Zhou ,1,2, Zhen Zhao,1,2 Xiaoli Dong ,1,2 Jinguang Cheng ,1,2 ing National Center for Condensed Matter Physics and Instit2School of Physical Sciences, University of Chi3Department of Physics and State Key Labora
Pages:updating ...
Year:2025
Publisher:x
Language:english
File Size:4.66 MB
Format:pdf
Categories: Ebooks

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Tunable Bifurcation of Magnetic Anisotropy and Bi-Oriented Antiferromagnetic Order in Kagome Metal GdTi3Bi4 by Jianfeng Guo,1,* Shiyu Zhu ,1,2,*,† Runnong Zhou ,1,2, Zhen Zhao,1,2 Xiaoli Dong ,1,2 Jinguang Cheng ,1,2 ing National Center for Condensed Matter Physics and Instit2School of Physical Sciences, University of Chi3Department of Physics and State Key Labora instant download

Phys. Rev. Lett. 134, 226704 (2025). doi:10.1103/mryp-krmp

The novel kagome family RTi3Bi4 (R: rare-earth metals) offers a unique platform for exploringdistinctive physical phenomena such as anisotropy, spin density wave, and anomalous Hall effect. Inparticular, the magnetic frustration and behavior of magnetic anisotropy in antiferromagnetic (AFM)kagome materials are of great interest for the fundamental studies and hold promise for next-generationdevice applications. Here, we report a tunable bifurcation of magnetic anisotropic and bi-oriented AFMorder observed in the quasi-1D kagome antiferromagnet GdTi3Bi4. The magnetic domain evolutionsduring two plateau transition processes are directly visualized, unveiling a pronounced in-plane anisotropyalong the a axis. Temperature-dependent characterization reveals a bifurcation transition of anisotropy atapproximately 2 K, where the a-axis anisotropy splits into two special orientations, revealing a hiddenbi-oriented in-plane AFM order that deviates from the high-symmetry direction by 7°. More intriguingly,the characteristics of the bifurcated anisotropy are clearly illustrated through vector magnetic fieldmodulation, revealing three distinct in-plane domain phases in the transverse magnetic field phase diagram.Our results not only provide valuable insights into the tunable bifurcation of magnetic anisotropic inGdTi3Bi4, but also pave a novel pathway for AFM spintronics development.DOI: 10.1103/mryp-krmp

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