English

Probing the uniaxial strains in MoS$_2$ using polarized Raman spectroscopy: A first-principles study

Materials Science 2016-02-02 v1

Abstract

Characterization of strain in two-dimensional (2D) crystals is important for understanding their properties and performance. Using first-principles calculations, we study the effects of uniaxial strain on the Raman-active modes in monolayer MoS2_2. We show that the in-plane EE' mode at 384 cm1^{-1} and the out-of-plane A1A_1' mode at 403 cm1^{-1} can serve as fingerprints for the uniaxial strain in this 2D material. Specifically, under a uniaxial strain, the doubly degenerate EE' mode splits into two non-degenerate modes: one is EE_{\parallel}' mode in which atoms vibrate in parallel to the strain direction, and the other is EE_\perp' mode in which atoms vibrate perpendicular to the strain direction. The frequency of the EE_{\parallel}' mode blue-shifts for a compressive strain, but red-shifts for a tensile strain. In addition, due to the strain-induced anisotropy in the MoS2_2 lattice, the polarized Raman spectra of the EE_{\parallel}' and EE_{\perp}' modes exhibit distinct angular dependence for specific laser polarization setups, allowing for a precise determination of the direction of the uniaxial strain with respect to the crystallographic orientation. Furthermore, we find that the polarized Raman intensity of the A1A_1' mode also shows evident dependence on the applied strain, providing additional effective clues for determining the direction of the strain even without knowledge of the crystallographic orientation. Thus, polarized Raman spectroscopy offers an efficient non-destructive way to characterize the uniaxial strains in monolayer MoS2_2.

Keywords

Cite

@article{arxiv.1511.04280,
  title  = {Probing the uniaxial strains in MoS$_2$ using polarized Raman spectroscopy: A first-principles study},
  author = {Danna Doratotaj and Jeffrey R. Simpson and Jia-An Yan},
  journal= {arXiv preprint arXiv:1511.04280},
  year   = {2016}
}

Comments

14 pages, 8 figures, submitted to PRB