材料科学
拉曼散射
拉曼光谱
声子
自旋电子学
分子振动
联轴节(管道)
凝聚态物理
单层
分子物理学
化学物理
晶体缺陷
散射
铁磁性
纳米技术
光学
化学
物理
冶金
作者
Kierstin Torres,Agnieszka Kuc,Lorenzo Maschio,Thang Pham,Kate Reidy,Lukáš Děkanovský,Zdeněk Sofer,Frances M. Ross,Julian Klein
标识
DOI:10.1002/adfm.202211366
摘要
Understanding the stability limitations and defect formation mechanisms in 2D magnets is essential for their utilization in spintronic and memory technologies. Here, we correlate defects in mono- to multilayer CrSBr with their structural, vibrational and magnetic properties. We use resonant Raman scattering to reveal distinct vibrational defect signatures. In pristine CrSBr, we show that bromine atoms mediate vibrational interlayer coupling, allowing for distinguishing between surface and bulk defect modes. We show that environmental exposure causes drastic degradation in monolayers, with the formation of intralayer defects. Through deliberate ion irradiation, we tune the formation of defect modes, which we show are strongly polarized and resonantly enhanced, reflecting the quasi-1D electronic character of CrSBr. Strikingly, we observe pronounced signatures of spin-phonon coupling of the intrinsic phonon modes and the ion beam induced defect modes throughout the magnetic transition temperature. Overall, we demonstrate that CrSBr shows air stability above the monolayer threshold, and provide further insight into the quasi-1D physics present. Moreover, we demonstrate defect engineering of magnetic properties and show that resonant Raman spectroscopy can serve as a direct fingerprint of magnetic phases and defects in CrSBr.
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