Center for Nanochemistry, Beijing National Laboratory for Molecular Sciences, Key Laboratory for the Physics and Chemistry of Nanodevices, State Key Laboratory for Structural Chemistry of Unstable and Stable Species, College of Chemistry and Molecular Engineering, Peking University, Beijing, 100871, P. R. China.
Small. 2016 May;12(19):2627-33. doi: 10.1002/smll.201600295. Epub 2016 Mar 31.
The incident and scattered light engaged in the Raman scattering process of low symmetry crystals always suffer from the birefringence-induced depolarization. Therefore, for anisotropic crystals, the classical Raman selection rules should be corrected by taking the birefringence effect into consideration. The appearance of the 2D anisotropic materials provides an excellent platform to explore the birefringence-directed Raman selection rules, due to its controllable thickness at the nanoscale that greatly simplifies the situation comparing with bulk materials. Herein, a theoretical and experimental investigation on the birefringence-directed Raman selection rules in the anisotropic black phosphorus (BP) crystals is presented. The abnormal angle-dependent polarized Raman scattering of the Ag modes in thin BP crystal, which deviates from the normal Raman selection rules, is successfully interpreted by the theoretical model based on birefringence. It is further confirmed by the examination of different Raman modes using different laser lines and BP samples of different thicknesses.
事件和散射光参与低对称晶体的喇曼散射过程总是受到双折射引起的去偏振的影响。因此,对于各向异性晶体,应该考虑双折射效应来修正经典的喇曼选择定则。二维各向异性材料的出现为探索双折射导向的喇曼选择定则提供了一个极好的平台,因为它在纳米尺度上可以控制厚度,与体材料相比大大简化了情况。本文对各向异性黑磷(BP)晶体中的双折射导向喇曼选择定则进行了理论和实验研究。通过基于双折射的理论模型,成功地解释了薄 BP 晶体中 Ag 模的异常角度相关偏振喇曼散射,该散射偏离了正常的喇曼选择定则。通过使用不同激光线和不同厚度的 BP 样品对不同的喇曼模式进行检查,进一步证实了这一结果。