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Raman scattering excitation spectroscopy of monolayer WS2

机译:单层WS2的拉曼散射激发光谱

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摘要

Resonant Raman scattering is investigated in monolayer WS2 at low temperature with the aid of an unconventional technique, i.e., Raman scattering excitation (RSE) spectroscopy. The RSE spectrum is made up by sweeping the excitation energy, when the detection energy is fixed in resonance with excitonic transitions related to either neutral or charged excitons. We demonstrate that the shape of the RSE spectrum strongly depends on the selected detection energy. The resonance of outgoing light with the neutral exciton leads to an extremely rich RSE spectrum, which displays several Raman scattering features not reported so far, while no clear effect on the associated background photoluminescence is observed. Instead, when the outgoing photons resonate with the negatively charged exciton, a strong enhancement of the related emission occurs. Presented results show that the RSE spectroscopy can be a useful technique to study electron-phonon interactions in thin layers of transition metal dichalcogenides.
机译:借助于非常规技术,即拉曼散射激发(RSE)光谱,在低温下在单层WS2中研究了共振拉曼散射。当检测能量与与中性或带电激子有关的激子跃迁共振固定时,RSE频谱通过扫描激发能组成。我们证明,RSE频谱的形状很大程度上取决于所选的检测能量。出射光与中性激子的共振导致了非常丰富的RSE光谱,该光谱显示了到目前为止尚未报道的几个拉曼散射特征,而未观察到对相关背景光致发光的明显影响。相反,当传出的光子与带负电的激子发生共振时,相关发射会大大增强。提出的结果表明,RSE光谱法可以用作研究过渡金属二卤化硅薄层中电子-声子相互作用的有用技术。

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