Bornhop D J
Appl Opt. 1995 Jun 20;34(18):3234-9. doi: 10.1364/AO.34.003234.
A new method has been applied to the determination of fluid bulk properties in small detection volumes. Through the use of an unfocused He-Ne laser beam and a cylindrical tube of capillary dimensions, relative refractive-index measurements are possible. The backscattered light from the illumination of a tube of capillary dimensions produces an interference pattern that is spatially defined and that contains information related to the bulk properties of the fluid contained in the tube. Positional changes in the intensity-modulated beam profile (interference fringes) are directly related to the refractive index of the fluid in the tube. The determination of dn/n at the 10(-7) level is possible in probe volumes of 350 pL. The technique has been applied to tubes as small as 75 µm inner diameter and as large as 1.0 mm inner diameter. No modification of the simple optical bench is required for facilitating the determination of refractive index for the complete range of tube diameters.
一种新方法已应用于小检测体积内流体体积性质的测定。通过使用非聚焦氦氖激光束和具有毛细管尺寸的圆柱形管,可以进行相对折射率测量。来自具有毛细管尺寸的管的照明的背向散射光产生空间定义的干涉图案,该图案包含与管中所含流体的体积性质相关的信息。强度调制光束轮廓(干涉条纹)中的位置变化与管中流体的折射率直接相关。在350 pL的探测体积中可以测定10^(-7)水平的dn/n。该技术已应用于内径小至75 µm和大至1.0 mm的管。对于整个管径范围的折射率测定,无需对简单的光学平台进行修改。