Meng Zhaokai, Yakovlev Vladislav V
Texas A&M University, Biomedical Engineering, College Station, TX, USA.
Texas A&M University, Biomedical Engineering, College Station, TX, USA
Appl Spectrosc. 2016 Aug;70(8):1356-63. doi: 10.1177/0003702816654050. Epub 2016 Jun 13.
Brillouin spectroscopy is an emerging tool for microscopic optical imaging as it allows noninvasive assessment of viscoelastic properties of materials. The use of atomic-molecular absorption cells as ultra-narrow notch filters allows acquisition of Brillouin spectra from turbid samples despite their strong elastic scattering. However, such systems alter the shapes of the Brillouin lines, making the precise determination of the Brillouin shift difficult. In this report, we propose a simple method for analyzing the Brillouin spectrum using a customized least-square fitting algorithm. The absorption spectrum induced by the atomic-molecular cell was taken into consideration. The capability of the method is confirmed by processing experimental spectroscopic data from the pure water at different temperatures. The accuracy of the measurements of ±1 MHz spectral line shift is experimentally demonstrated.
布里渊光谱学是一种新兴的微观光学成像工具,因为它能够对材料的粘弹性进行无创评估。将原子 - 分子吸收池用作超窄陷波滤波器,使得即便在存在强烈弹性散射的情况下,也能从浑浊样品中采集布里渊光谱。然而,此类系统会改变布里渊线的形状,导致难以精确测定布里渊频移。在本报告中,我们提出了一种使用定制的最小二乘拟合算法来分析布里渊光谱的简单方法。该方法考虑了原子 - 分子吸收池所诱导的吸收光谱。通过处理不同温度下纯水的实验光谱数据,证实了该方法的有效性。实验证明了测量的精度可达±1 MHz谱线频移。