拉曼光谱
布里渊区
材料科学
布里渊散射
分光计
布里渊光谱学
光学
光谱学
信号(编程语言)
光电子学
物理
激光器
计算机科学
量子力学
程序设计语言
作者
Xue‐Lu Liu,Henan Liu,Jiangbin Wu,Hanxu Wu,Tao Zhang,Weiqian Zhao,Ping‐Heng Tan
摘要
Simultaneous Stokes and anti-Stokes ultralow-frequency (ULF) Raman measurement down to ∼2 cm−1 or 60 GHz is realized by a single-stage spectrometer in combination with volume-Bragg-grating-based notch filters. This system reveals its excellent performance by probing Brillouin signal of acoustic phonons in silicon, germanium, gallium arsenide, and gallium nitride. The deduced sound velocity and elastic constants are in good accordance with previous results determined by various methods. This system can shorten the integration time of the Brillouin signal with a good signal-to-noise ratio by more than 2000-fold compared to a Fabry-Perot interferometer (FPI). This study shows how a filter-based ULF Raman system can be used to reliably achieve Brillouin spectroscopy for condensed materials with high sensitivity and high signal-to-noise ratio, stimulating fast Brillouin spectrum measurements to probe acoustic phonons in semiconductors.
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