Milekhin Ilya, Anikin Kirill, Kurus Nina N, Mansurov Vladimir G, Malin Timur V, Zhuravlev Konstantin S, Milekhin Alexander G, Latyshev Alexander V, Zahn Dietrich R T
Semiconductor Physics, Chemnitz University of Technology D-09107 Chemnitz Germany.
Center for Materials, Architectures, and Integration of Nanomembranes (MAIN), Chemnitz University of Technology Chemnitz Germany.
Nanoscale Adv. 2023 Apr 21;5(10):2820-2830. doi: 10.1039/d3na00054k. eCollection 2023 May 16.
We demonstrate local phonon analysis of single AlN nanocrystals by two complementary imaging spectroscopic techniques: tip-enhanced Raman scattering (TERS) and nano-Fourier transform infrared (nano-FTIR) spectroscopy. Strong surface optical (SO) phonon modes appear in the TERS spectra with their intensities revealing a weak polarization dependence. The local electric field enhancement stemming from the plasmon mode of the TERS tip modifies the phonon response of the sample, making the SO mode dominate over other phonon modes. The TERS imaging allows the spatial localization of the SO mode to be visualized. We were able to probe the angle anisotropy on the SO phonon modes in AlN nanocrystals with nanoscale spatial resolution. The excitation geometry and the local nanostructure surface profile determine the frequency position of SO modes in nano-FTIR spectra. An analytical calculation explains the behaviour of SO mode frequencies tip position with respect to the sample.
我们通过两种互补的成像光谱技术展示了对单个AlN纳米晶体的局域声子分析:针尖增强拉曼散射(TERS)和纳米傅里叶变换红外(nano-FTIR)光谱。强表面光学(SO)声子模出现在TERS光谱中,其强度显示出微弱的偏振依赖性。源于TERS针尖等离子体模的局域电场增强改变了样品的声子响应,使SO模比其他声子模占主导地位。TERS成像使SO模的空间定位得以可视化。我们能够以纳米级空间分辨率探测AlN纳米晶体中SO声子模的角度各向异性。激发几何结构和局部纳米结构表面轮廓决定了nano-FTIR光谱中SO模的频率位置。一项分析计算解释了SO模频率随针尖相对于样品位置的变化行为。