Davydov Splitting and Excitonic Resonance Effects in Raman Spectra of Few-Layer MoSe2

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초록

Raman spectra of few-layer MoSe2 were measured with eight excitation energies. New peaks that appear only near resonance with various exciton states are analyzed, and the modes are assigned. The resonance profiles of the Raman peaks reflect the joint density of states for optical transitions, but the symmetry of the exciton wave functions leads to selective enhancement of the Aig mode at the A exciton energy and the shear mode at the C exciton energy. We also find Davydov splitting of intralayer A(1g), E-1g, and A(2u) modes due to interlayer interaction for some excitation energies near resonances. Furthermore, by fitting the spectral positions of interlayer shear and breathing modes and Davydov splitting of intralayer modes to a linear chain model, we extract the strength of the interlayer interaction. We find that the second-nearest-neighbor interlayer interaction amounts to about 30% of the nearest-neighbor interaction for both in-plane and out-of-plane vibrations.

키워드

MoSe2molybdenum diselenideRaman spectroscopyDavydov splittingexcitonic resonanceMONOLAYER MOS2SCATTERINGBULKOPTOELECTRONICSSPECTROSCOPYPOLYTYPISMGROWTHENERGYSTATESMODES
제목
Davydov Splitting and Excitonic Resonance Effects in Raman Spectra of Few-Layer MoSe2
저자
Kim, KangwonLee, Jae-UngNam, DahyunCheong, Hyeonsik
DOI
10.1021/acsnano.6b04471
발행일
2016-08
유형
Article
저널명
ACS Nano
10
8
페이지
8113 ~ 8120