论文标题

通过谐振拉曼散射在CRSBR中探测缺陷和自旋偶联

Probing defects and spin-phonon coupling in CrSBr via resonant Raman scattering

论文作者

Torres, Kierstin, Kuc, Agnieszka, Maschio, Lorenzo, Pham, Thang, Reidy, Kate, Dekanovsky, Lukas, Sofer, Zdenek, Ross, Frances M., Klein, Julian

论文摘要

了解2D磁铁中的稳定性局限性和缺陷形成机制对于它们在自旋和记忆技术中的利用至关重要。在这里,我们将单层CRSBR中的缺陷与它们的结构,振动和磁性特性相关联。我们使用谐振拉曼散射来揭示不同的振动缺陷特征。在原始的CRSBR中,我们表明溴原子介导振动互层耦合,从而可以区分表面和散装缺陷模式。我们表明,环境暴露会导致单层的急剧降解,并形成了内部缺陷。通过故意的离子辐照,我们调整了缺陷模式的形成,我们显示出强烈极化和共鸣的增强,反映了CRSBR的准1D电子特征。引人注目的是,我们观察到内在声子模式的自旋 - 音波耦合的明显特征和在整个磁过渡温度的整个磁性缺陷模式。总体而言,我们证明CRSBR在单层阈值上面显示出空气稳定性,并提供了对存在的准1D物理学的进一步见解。此外,我们展示了磁性特性的缺陷工程,并表明共振拉曼光谱可以用作CRSBR中磁相和缺陷的直接指纹。

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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