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分子吸附对二维CrGeTe中自旋波谱和磁振子弛豫的影响。

Effects of molecular adsorption on the spin-wave spectrum and magnon relaxation in two-dimensional CrGeTe.

作者信息

Wang Ke, Ren Kai, Cheng Yuan, Zhang Min, Wang Hai, Zhang Gang

机构信息

Xidian University, No. 2 Taibai Road, Xi'an, Shaanxi Province 710071, China.

School of Mechanical Engineering, Southeast University, Nanjing, Jiangsu 211189, China.

出版信息

Phys Chem Chem Phys. 2020 Oct 7;22(38):22047-22054. doi: 10.1039/d0cp03884a.

Abstract

In this work, we performed detailed first-principles calculation and theoretical analysis to investigate the effect of molecular adsorption on the spin-wave spectrum and magnon relaxation in a Cr2Ge2Te6 (CGT) monolayer. It is found that NH3, NO, and NO2 adsorption can enhance the exchange constant of CGT, which can result in a blue-shift in the spin-wave spectrum. At 30 K, by means of a thorough investigation of many possible lattice configurations excited by thermal fluctuation, we identify the magnon scattering rate from the intrinsic lattice vibrational modes, and find that the relaxation of optical and acoustic magnons exhibits a completely different wave vector dependence. Moreover, although the adsorption of NO2 and NH3 molecules has a negligible influence on the magnon-phonon interaction, the adsorption of NO molecules results in a significant increase in magnon scattering strength. In the long-wavelength limit, the interlayer vibrational modes induced by NO adsorption increase the magnon-phonon scattering strength by ∼12.7%. The remarkable interlayer magnon-phonon interaction is ascribed to the strong CGT-NO coupling and large molecular vibration amplitude. Considering the importance of magnon relaxation time in the application of spin devices, we suggest that both the impacts on the exchange interaction and scattering rate must be considered when manipulating two-dimensional magnets by surface functionalization.

摘要

在这项工作中,我们进行了详细的第一性原理计算和理论分析,以研究分子吸附对Cr2Ge2Te6(CGT)单层中自旋波谱和磁振子弛豫的影响。研究发现,NH3、NO和NO2的吸附可以增强CGT的交换常数,这会导致自旋波谱发生蓝移。在30 K时,通过对热涨落激发的许多可能晶格构型的深入研究,我们确定了本征晶格振动模式的磁振子散射率,并发现光学和声学磁振子的弛豫表现出完全不同的波矢依赖性。此外,尽管NO2和NH3分子的吸附对磁振子-声子相互作用的影响可以忽略不计,但NO分子的吸附会导致磁振子散射强度显著增加。在长波长极限下,NO吸附诱导的层间振动模式使磁振子-声子散射强度增加了约12.7%。这种显著的层间磁振子-声子相互作用归因于强的CGT-NO耦合和大的分子振动幅度。考虑到磁振子弛豫时间在自旋器件应用中的重要性,我们建议在通过表面功能化操纵二维磁体时,必须同时考虑对交换相互作用和散射率的影响。

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