首页> 外文会议>Conference on Nonlinear Frequency Generation and Conversion: Materials, Devices, and Applications III; 20040126-20040127; San Jose,CA; US >CW-OPO based cavity-leak-out spectrometer for ultra-sensitive and selective mid infrared trace gas analysis
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CW-OPO based cavity-leak-out spectrometer for ultra-sensitive and selective mid infrared trace gas analysis

机译:基于CW-OPO的腔漏光谱仪,用于超灵敏和选择性的中红外痕量气体分析

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An all-solid-state infrared trace gas sensor is presented combining a continuous-wave optical parametric oscillator (OPO) with Cavity Leak-Out spectroscopy (CALOS), a cw version of Cavity Ring Down spectroscopy. The PPLN based pump resonant, singly resonant OPO is pumped at 1064 nm (2 W). Dual cavity design allows to select any desired wavelength within the emission range of the OPO (3.1 - 3.8 μm) and to use different tuning schemes in order to scan absorption features. To detect the CALOS signals the OPO frequency is scanned over the cavity resonance at kHz rates. The high power of the OPO (up to 100 mW at each end of the cavity) allows a strong excitation of the TEM_(00) mode of the cavity, yielding large detector signals. A noise-equivalent absorption coefficient of 1.6 · 10~(-10)cm~(-1)/ Hz~(1/2) is reached for integration times up to 180 sec. This corresponds to a detection limit for ethane at sub-ppt level. Measurements at reduced pressure (100 mbar) combined with a scanning of the OPO over cm~(-1) wide regions allows a multi-gas analysis of ambient air and human breath samples without a cooling-trap.
机译:提出了一种全固态红外痕量气体传感器,该传感器结合了连续波光学参量振荡器(OPO)和腔漏光光谱法(CALOS),是腔衰荡光谱法的CW版本。基于PPLN的泵浦谐振,单谐振OPO在1064 nm(2 W)处被泵浦。双腔设计允许在OPO的发射范围(3.1-3.8μm)中选择任何所需的波长,并使用不同的调谐方案来扫描吸收特征。为了检测CALOS信号,在腔共振上以kHz速率扫描OPO频率。 OPO的高功率(空腔两端的功率高达100 mW)允许强烈激发空腔的TEM_(00)模式,从而产生较大的检测器信号。对于长达180秒的积分时间,噪声等效吸收系数为1.6·10〜(-10)cm〜(-1)/ Hz〜(1/2)。这对应于低于ppt水平的乙烷的检出限。减压(100 mbar)下的测量与在cm〜(-1)宽范围内对OPO的扫描相结合,可以在没有冷却阱的情况下对环境空气和人的呼吸样品进行多气体分析。

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