Spin-induced linear polarization of photoluminescence in antiferromagnetic van der Waals crystals

被引:0
|
作者
Xingzhi Wang
Jun Cao
Zhengguang Lu
Arielle Cohen
Hikari Kitadai
Tianshu Li
Qishuo Tan
Matthew Wilson
Chun Hung Lui
Dmitry Smirnov
Sahar Sharifzadeh
Xi Ling
机构
[1] Boston University,Department of Chemistry
[2] National High Magnetic Field Laboratory,Department of Physics
[3] Florida State University,Division of Materials Science and Engineering
[4] Boston University,Department of Physics and Astronomy
[5] University of California,Department of Electrical and Computer Engineering
[6] Boston University,Department of Physics
[7] Boston University,The Photonics Center
[8] Boston University,undefined
来源
Nature Materials | 2021年 / 20卷
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摘要
Antiferromagnets are promising components for spintronics due to their terahertz resonance, multilevel states and absence of stray fields. However, the zero net magnetic moment of antiferromagnets makes the detection of the antiferromagnetic order and the investigation of fundamental spin properties notoriously difficult. Here, we report an optical detection of Néel vector orientation through an ultra-sharp photoluminescence in the van der Waals antiferromagnet NiPS3 from bulk to atomically thin flakes. The strong correlation between spin flipping and electric dipole oscillator results in a linear polarization of the sharp emission, which aligns perpendicular to the spin orientation in the crystal. By applying an in-plane magnetic field, we achieve manipulation of the photoluminescence polarization. This correlation between emitted photons and spins in layered magnets provides routes for investigating magneto-optics in two-dimensional materials, and hence opens a path for developing opto-spintronic devices and antiferromagnet-based quantum information technologies.
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页码:964 / 970
页数:6
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