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Interband and intraband optical transitions in mercury chalcogenide colloidal quantum dots

机译:汞硫族化物胶体量子点中的带间和带内光学跃迁

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We study the optical transitions in mercury chalcogenide colloidal quantum dots (CQDs) by using Fourier transform infrared spectrometer. The optical absorption measurements revealed distinct optical transition processes in mercury telluride (HgTe) CQDs and mercury selenium (HgSe) CQDs. The results show that the spectral absorbance of HgTe CQDs is broadband, which is originated from the interband optical transition between valence band to conduction band, while that of HgSe CQDs is narrowband. And we speculate that the narrowband absorption is resulted from the intraband transition in HgSe CQDs. Furthermore, both the interband energy gaps of HgTe CQDs and intraband energy gaps of HgSe CQDs have been estimated based on the spectral absorbance. The extracted energy gaps are in good agreement with the calculated values by two-band Kroning-Penny model.
机译:我们通过使用傅立叶变换红外光谱仪研究了硫族硫属元素胶体量子点(CQDs)中的光学跃迁。吸光度测量揭示了碲化汞(HgTe)CQD和汞硒(HgSe)CQD中不同的光学跃迁过程。结果表明,HgTe CQDs的光谱吸收是宽带的,这是由价带到导带之间的带间光学跃迁引起的,而HgSe CQDs的光谱吸收是窄带的。并且我们推测窄带吸收是由HgSe CQD中的带内跃迁引起的。此外,已经基于光谱吸收率估计了HgTe CQD的带间能隙和HgSe CQD的带内能隙。所提取的能隙与两波段克朗宁-彭尼模型的计算值非常吻合。

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