Distinct magneto-Raman signatures of spin-flip phase transitions in CrI3

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作者
Amber McCreary
Thuc T. Mai
Franz G. Utermohlen
Jeffrey R. Simpson
Kevin F. Garrity
Xiaozhou Feng
Dmitry Shcherbakov
Yanglin Zhu
Jin Hu
Daniel Weber
Kenji Watanabe
Takashi Taniguchi
Joshua E. Goldberger
Zhiqiang Mao
Chun Ning Lau
Yuanming Lu
Nandini Trivedi
Rolando Valdés Aguilar
Angela R. Hight Walker
机构
[1] National Institute of Standards and Technology,Nanoscale Device Characterization Division, Physical Measurement Laboratory
[2] The Ohio State University,Department of Physics
[3] Towson University,Department of Physics, Astronomy, and Geosciences
[4] National Institute of Standards and Technology,Materials Measurement Science Division, Material Measurement Laboratory
[5] The Pennsylvania State University,Department of Physics
[6] University of Arkansas,Department of Physics
[7] The Ohio State University,Department of Chemistry and Biochemistry
[8] National Institute for Materials Science,Battery and Electrochemistry Laboratory, Institute of Nanotechnology
[9] Karlsruhe Institute of Technology,undefined
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摘要
The discovery of 2-dimensional (2D) materials, such as CrI3, that retain magnetic ordering at monolayer thickness has resulted in a surge of both pure and applied research in 2D magnetism. Here, we report a magneto-Raman spectroscopy study on multilayered CrI3, focusing on two additional features in the spectra that appear below the magnetic ordering temperature and were previously assigned to high frequency magnons. Instead, we conclude these modes are actually zone-folded phonons. We observe a striking evolution of the Raman spectra with increasing magnetic field applied perpendicular to the atomic layers in which clear, sudden changes in intensities of the modes are attributed to the interlayer ordering changing from antiferromagnetic to ferromagnetic at a critical magnetic field. Our work highlights the sensitivity of the Raman modes to weak interlayer spin ordering in CrI3.
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