Xu Ming, Ren Junpeng, Miao Runcai, Zhang Zongquan
Appl Opt. 2016 Oct 1;55(28):8101-8106. doi: 10.1364/AO.55.008101.
We present a method of nonintrusive measurement of the refractive index of a liquid in a glass cuvette, which uses some optical properties of the cuvette wall and the principle of total internal reflection. By coating a transmission-scattering paint layer on the outer surface of the cuvette, we transform an incident laser beam into a transmitted scattered light. When the transmitted scattered light reaches the interface between the container wall and the liquid inside, the light beams satisfying the condition of total internal reflection are reflected to the coating layer, automatically forming a circular dark pattern that is related to the refractive index of the liquid. Based on an analytic relation between the diameter of the circular dark pattern and the refractive index of the liquid, we devised a method of in situ nonintrusive refractive index measurement. We tested the effect of several parameters on the measuring accuracy and found that the optimal thickness of the transmission-scattering layer is in the range of 50-70 μm, and the aperture of the diaphragm should be in the range of 0.7-1.0 mm. We measured the refractive indices of ethanol, Coca Cola, and red wine, and achieved an accuracy of ±3×10 RIU (refractive index unit).
我们提出了一种用于非侵入式测量玻璃比色皿中液体折射率的方法,该方法利用了比色皿壁的一些光学特性和全内反射原理。通过在比色皿外表面涂覆一层透射散射漆层,我们将入射激光束转换为透射散射光。当透射散射光到达容器壁与内部液体的界面时,满足全内反射条件的光束会反射到涂层,自动形成一个与液体折射率相关的圆形暗斑。基于圆形暗斑直径与液体折射率之间的解析关系,我们设计了一种原位非侵入式折射率测量方法。我们测试了几个参数对测量精度的影响,发现透射散射层的最佳厚度在50 - 70μm范围内,光阑孔径应在0.7 - 1.0mm范围内。我们测量了乙醇、可口可乐和红酒的折射率,测量精度达到了±3×10⁻⁴RIU(折射率单位)。