Laboratoire Charles Coulomb, UMR 5221, CNRS and Université Montpellier II, F-34095 Montpellier, France.
J Phys Condens Matter. 2014 Jan 8;26(1):015401. doi: 10.1088/0953-8984/26/1/015401. Epub 2013 Nov 29.
Microhyper-Raman spectroscopy of PbMg(1/3)Nb(2/3)O(3) (PMN) single crystal is performed at room temperature. The use of an optical microscope working in backscattering geometry significantly reduces the LO signal, highlighting thereby the weak contributions underneath. We clearly identify the highest frequency transverse optic mode (TO3) in addition to the previously observed soft TO-doublet at low frequency and TO2 at intermediate frequency. TO3 exhibits strong inhomogeneous broadening but perfectly fulfils the hyper-Raman cubic selection rules. The analysis shows that hyper-Raman spectroscopy is sensitive to all the vibrations of the average cubic Pm3¯m symmetry group of PMN, the three polar F1u- and the silent F2u-symmetry modes. All these vibrations can be identified in the Raman spectra alongside other vibrational bands likely arising from symmetry breaking in polar nanoregions.
室温下对 PbMg(1/3)Nb(2/3)O(3) (PMN) 单晶体进行微高拉曼光谱学研究。采用工作于背散射几何的光学显微镜可显著降低 LO 信号,从而突出下面较弱的贡献。除了先前在低频处观察到的软 TO-双峰和中频处的 TO2 之外,我们还明确地识别出了最高频率的横向光学模式 (TO3)。TO3 表现出强烈的非均匀展宽,但完全满足高拉曼立方选择定则。分析表明,高拉曼光谱学对 PMN 平均立方 Pm3¯m 对称群的所有振动、三个极性 F1u-和无声 F2u-对称性模式均敏感。所有这些振动都可以与其他振动带一起在拉曼光谱中识别出来,这些振动带可能源于极性纳米区的对称破缺。