Zhu X, Cassidy D T
Appl Opt. 1996 Aug 20;35(24):4689-93. doi: 10.1364/AO.35.004689.
A liquid detection system consisting of a diode laser with multiple short external cavities (MSXC's) is reported. The MSXC diode laser operates single mode on one of 18 distinct modes that span a range of 72 nm. We selected the modes by setting the length of one of the external cavities using a piezoelectric positioner. One can measure the transmission through cells by modulating the injection current at audio frequencies and using phase-sensitive detection to reject the ambient light and reduce 1/f noise. A method to determine regions of single-mode operation by the rms of the output of the laser is described. The transmission data were processed by multivariate calibration techniques, i.e., partial least squares and principal component regression. Water concentration in acetone was used to demonstrate the performance of the system. A correlation coefficient of R(2) = 0.997 and 0.29% root-mean-square error of prediction are found for water concentration over the range of 2-19%.
报道了一种由具有多个短外腔(MSXC)的二极管激光器组成的液体检测系统。MSXC二极管激光器在18种不同模式中的一种上以单模运行,这些模式跨越72nm的范围。我们通过使用压电定位器设置其中一个外腔的长度来选择模式。通过在音频频率下调制注入电流并使用相敏检测来抑制环境光并降低1/f噪声,可以测量通过样品池的透射率。描述了一种通过激光器输出的均方根来确定单模运行区域的方法。透射数据通过多元校准技术进行处理,即偏最小二乘法和主成分回归。使用丙酮中的水浓度来证明该系统的性能。在2-19%的水浓度范围内,发现相关系数R(2)=0.997,预测的均方根误差为0.29%。