Webster Christopher R, Flesch Gregory J, Mansour Kamjou, Haberle Robert, Bauman Jill
Jet Propulsion Laboratory, California Institute of Technology, Pasadena, California 91109, USA.
Appl Opt. 2004 Aug 1;43(22):4436-45. doi: 10.1364/ao.43.004436.
We have designed and built a miniature near-IR tunable diode laser (TDL) spectrometer for measuring in situ the water vapor mixing ratio either in the Martian atmosphere or thermally evolved from Martian soil or ice samples. The laser hygrometer uses a thermoelectrically cooled single-mode distributed-feedback TDL at 1.87 microm to scan over a selected vibration-rotation line of both H2O and CO2 near 5327.3 cm(-1). A working prototype that weighs only 230 g has been built and used to generate spectra whose analysis demonstrates precision sensitivities as fine as 1 part in 10(6) by volume in 1 s or 0.1 part in 10(6) in 10 s at Martian pressures and temperatures. Absolute uncertainties of approximately 5% are calculated.
我们设计并制造了一种微型近红外可调谐二极管激光(TDL)光谱仪,用于原位测量火星大气中的水汽混合比,或者测量从火星土壤或冰样中热释放出的水汽混合比。该激光湿度计使用一个热电冷却的单模分布反馈TDL,波长为1.87微米,在5327.3厘米-1附近扫描H2O和CO2的选定振动-转动谱线。现已制造出一个重量仅为230克的工作原型,并用于生成光谱,光谱分析表明,在火星压力和温度条件下,其精度灵敏度在1秒内可达体积分数10的6次方分之一,在10秒内可达10的6次方分之0.1。计算得出的绝对不确定度约为5%。