Weidmann Damien, Wysocki Gerard
Space Science and Technology Department, STFC Rutherford Appleton Laboratory, Harwell Science and Innovation Campus, Didcot, Oxfordshire, UK.
Opt Express. 2009 Jan 5;17(1):248-59. doi: 10.1364/oe.17.000248.
Broadband thermal infrared heterodyne spectro-radiometry using an external cavity quantum cascade laser as a tunable local oscillator has been performed over a frequency range of more than 100 cm(-1) at a central frequency of 1190 cm(-1). Heterodyne spectro-radiometry is demonstrated for two local oscillator tuning modes: broadband tuning for transmission and emission spectroscopy of broadband absorbers (Freon 12), and broadband frequency selection in combination with fine continuous frequency tuning for high-resolution (0.021 cm(-1)) transmission spectroscopy (N(2)O). In each case concentration retrievals are performed and analyzed. The spectroradiometer noise level is demonstrated to be twenty two and eight times the fundamental shot-noise limit in the two scanning modes respectively.
利用外腔量子级联激光器作为可调谐本地振荡器,在中心频率为1190 cm(-1)的情况下,在超过100 cm(-1)的频率范围内进行了宽带热红外外差光谱辐射测量。展示了外差光谱辐射测量的两种本地振荡器调谐模式:用于宽带吸收体(氟利昂12)透射和发射光谱的宽带调谐,以及与精细连续频率调谐相结合用于高分辨率(0.021 cm(-1))透射光谱(N(2)O)的宽带频率选择。在每种情况下都进行并分析了浓度反演。在两种扫描模式下,光谱辐射计的噪声水平分别被证明是基本散粒噪声极限的22倍和8倍。