Hutchins Romanus, Schumacher Justin, Frank Eric, Ambekar Yogeshwari S, Zanini Giulia, Scarcelli Giuliano
Opt Express. 2024 May 20;32(11):18572-18581. doi: 10.1364/OE.521427.
Brillouin spectrometers, used for characterizing material mechanical properties, traditionally employ etalons such as Fabry-Pérot interferometers and virtually imaged phased arrays (VIPA) that use spatial dispersion of the spectrum for measurement. Here, we introduce what we believe to be a novel approach to Brillouin spectroscopy using hot atomic vapors. Using laser induced circular dichroism of the rubidium D2 line in a ladder-type configuration, we developed a narrow-band monochromator for Brillouin analysis. Unlike etalon-based spectrometers, atomic line monochromators operate in free-space, facilitating Brillouin spectroscopy integration with microscopy instruments. We report the transmission and spectral resolution performances of the spectrometer and demonstrate Brillouin spectra measurements in liquids.
用于表征材料机械性能的布里渊光谱仪,传统上采用诸如法布里 - 珀罗干涉仪和虚拟成像相控阵(VIPA)等标准具,这些标准具利用光谱的空间色散进行测量。在此,我们介绍一种我们认为是使用热原子蒸汽进行布里渊光谱分析的新方法。利用阶梯型配置中铷D2线的激光诱导圆二色性,我们开发了一种用于布里渊分析的窄带单色仪。与基于标准具的光谱仪不同,原子线单色仪在自由空间中运行,便于布里渊光谱仪与显微镜仪器集成。我们报告了该光谱仪的透射率和光谱分辨率性能,并展示了在液体中的布里渊光谱测量。