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层状二硫化钼的拉曼张量

Raman tensor of layered MoS.

作者信息

Ding Ying, Zheng Wei, Jin Mingge, Zhu Yanming, Zhu Ruinan, Lin Zeguo, Huang Feng

出版信息

Opt Lett. 2020 Mar 15;45(6):1313-1316. doi: 10.1364/OL.384524.

Abstract

Raman tensors, one of the basic physical properties of ${{\rm MoS}2}$MoS, are rarely reported. Here, angle-resolved polarized Raman scatterings on basal and cross planes of layered ${{\rm MoS}2}$MoS were carried out using the geometry configuration of parallel polarization, and the Raman tensors of three optical vibration modes were systematically studied. As a polar vibration mode, the differential polarizability of the ${{\rm A}{1{\rm g}}}$A mode corresponding to the Raman tensor along the $c$c direction is larger than that along the $a$a direction. In addition, it is also larger than that formed by ${{\rm E}{2{\rm g}}}$E and ${{\rm E}_{1{\rm g}}}$E modes. All the experimental results above are beneficial to the understanding of inelastic light-scattering process of ${{\rm MoS}_2}$MoS.

摘要

拉曼张量是二硫化钼($MoS_2$)的基本物理性质之一,鲜有报道。在此,利用平行偏振的几何构型,对层状二硫化钼($MoS_2$)基面和横截面进行了角分辨偏振拉曼散射,并系统研究了三种光学振动模式的拉曼张量。作为一种极性振动模式,对应于拉曼张量沿$c$方向的$A_{1g}$模式的微分极化率大于沿$a$方向的微分极化率。此外,它也大于由$E_{2g}$和$E_{1g}$模式形成的微分极化率。上述所有实验结果都有助于理解二硫化钼($MoS_2$)的非弹性光散射过程。

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