Direct observation of two-dimensional magnons in atomically thin CrI3

被引:0
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作者
John Cenker
Bevin Huang
Nishchay Suri
Pearl Thijssen
Aaron Miller
Tiancheng Song
Takashi Taniguchi
Kenji Watanabe
Michael A. McGuire
Di Xiao
Xiaodong Xu
机构
[1] University of Washington,Department of Physics
[2] Carnegie Mellon University,Department of Physics
[3] National Institute for Materials Science,Materials Science and Technology Division
[4] Oak Ridge National Laboratory,Department of Materials Science and Engineering
[5] University of Washington,undefined
来源
Nature Physics | 2021年 / 17卷
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摘要
Magnons are collective spin excitations in crystals with long-range magnetic order. The emergent van der Waals magnets1–3 provide a highly tunable platform to explore magnetic excitations in the two-dimensional limit with intriguing properties, manifesting from their honeycomb lattice structure and switchable magnetic configurations. Here, we report the direct observation of two-dimensional magnons through magneto-Raman spectroscopy with optical selection rules determined by the interplay between crystal symmetry, layer number and magnetic states in atomically thin CrI3. In monolayers, we observe an acoustic magnon mode at ~0.3 meV. It has strict cross-circularly polarized selection rules locked to the magnetization direction that originates from the conservation of angular momentum of photons and magnons dictated by three-fold rotational symmetry4. Additionally, we reveal optical magnon modes at ~17 meV. This mode is Raman silent in monolayers, but optically active in bilayers and bulk due to a relaxation of the parity criterion resulting from the layer index. In the layered antiferromagnetic states, we directly resolve two degenerate optical magnon modes with opposite angular momentum and conjugate optical selection rules. From these measurements, we quantitatively extract the spin-wave gap, magnetic anisotropy and intralayer and interlayer exchange constants, and establish two-dimensional magnets as a new platform for exploring magnon physics.
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页码:20 / 25
页数:5
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