Temperature induced modulation of resonant Raman scattering in bilayer 2H-MoS 2

SCIENTIFIC REPORTS(2022)

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摘要
The temperature evolution of the resonant Raman scattering from high-quality bilayer 2H-MoS _2 encapsulated in hexagonal BN flakes is presented. The observed resonant Raman scattering spectrum as initiated by the laser energy of 1.96 eV, close to the A excitonic resonance, shows rich and distinct vibrational features that are otherwise not observed in non-resonant scattering. The appearance of 1st and 2nd order phonon modes is unambiguously observed in a broad range of temperatures from 5 to 320 K. The spectrum includes the Raman-active modes, i.e. E _1g^2 ( Γ ) and A _1g ( Γ ) along with their Davydov-split counterparts, i.e. E _1u ( Γ ) and B _1u ( Γ ). The temperature evolution of the Raman scattering spectrum brings forward key observations, as the integrated intensity profiles of different phonon modes show diverse trends. The Raman-active A _1g ( Γ ) mode, which dominates the Raman scattering spectrum at T = 5 K quenches with increasing temperature. Surprisingly, at room temperature the B _1u ( Γ ) mode, which is infrared-active in the bilayer, is substantially stronger than its nominally Raman-active A _1g ( Γ ) counterpart.
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关键词
Atomic and molecular interactions with photons,Condensed-matter physics,Two-dimensional materials,Science,Humanities and Social Sciences,multidisciplinary
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