Yu Song-Lin, Li Da-Chao, Zhong Hao, Sun Chang-Yue, Xu Ke-Xin
State Key Laboratory of Precision Measuring Technology and Instruments, Tianjin University, Tianjin 300072, China.
Guang Pu Xue Yu Guang Pu Fen Xi. 2013 Apr;33(4):972-6.
The authors proposed a method of control and stabilization for laser emission wavelengths and power, and presented the mid-infrared wavelength tunable laser with broad emission spectrum band of 9.19-9.77 microm, half wave width of 4 cm(-1), spectral resolution of 2.7 x 10(4) and max power of 800 mW with fluctuation < 0.8% in the present paper. The tunable laser was employed as the light source in combination with ATR sensor for glucose measurement in PBS solution. In our experiments, absorbance at the five laser emission wavelengths, including 1 081, 1 076, 1 051, 1 041 and 1 037 cm(-1) in the 9R and 9P band of the laser emission spectrum, all correlates well with the glucose concentration (R2 > 0.99, SD < 0.0004, P < 0.000 1). Especially, the sensitivity of this laser spectroscopy system is about 4 times as high as that of traditional FTIR spectrometer.
作者提出了一种控制和稳定激光发射波长及功率的方法,并在本文中展示了一种中红外波长可调谐激光器,其发射光谱带宽为9.19 - 9.77微米,半高宽为4厘米⁻¹,光谱分辨率为2.7×10⁴,最大功率为800毫瓦,功率波动<0.8%。该可调谐激光器与衰减全反射(ATR)传感器结合用作光源,用于在磷酸盐缓冲盐水(PBS)溶液中测量葡萄糖。在我们的实验中,激光发射光谱9R和9P波段中1081、1076、1051、1041和1037厘米⁻¹这五个激光发射波长处的吸光度与葡萄糖浓度均具有良好的相关性(R²>0.99,标准差<0.0004,P<0.0001)。特别是,该激光光谱系统的灵敏度约为传统傅里叶变换红外(FTIR)光谱仪的4倍。