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Quantum-cascade laser measurements of stratospheric methane and nitrous oxide

机译:平流层甲烷和一氧化二氮的量子级联激光测量

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摘要

A tunable quantum-cascade (QC) laser has been flown on NASA's ER-2 high-altitude aircraft to produce the first atmospheric gas measurements with this newly invented device, an important milestone in the QC laser's future planetary, industrial, and commercial applications. Using a cryogenically cooled QC laser during a series of 20 aircraft flights beginning in September 1999 and extending through March 2000, we took measurements of methane (CH_(4)) and nitrous oxide (N_(2)O) gas up to ~20 km in the stratosphere over North America, Scandinavia, and Russia. The QC laser operating near an 8-μm wavelength was produced by the groups of Capasso and Cho of Bell Laboratories, Lucent Technologies, where QC lasers were invented in 1994. Compared with its companion lead salt diode lasers that were also flown on these flights, the single-mode QC laser cooled to 82 K and produced higher output power (10 mW), narrower laser linewidth (17 MHz), increased measurement precision (a factor of 3), and better spectral stability (~0.1 cm~(-1) K). The sensitivity of the QC laser channel was estimated to correspond to a minimum-detectable mixing ratio for methane of approximately 2 parts per billion by volume.
机译:一种可调谐量子级联(QC)激光器已经在NASA的ER-2高空飞机上飞行,以使用这种新发明的设备进行首次大气气体测量,这是QC激光器在未来的行星,工业和商业应用中的重要里程碑。在1999年9月至2000年3月的20架飞机飞行中,使用低温冷却的QC激光器,我们测量了直至20 km的甲烷(CH_(4))和一氧化二氮(N_(2)O)气体在北美洲,斯堪的那维亚和俄罗斯的平流层中。波长约为8μm的QC激光器由朗讯科技公司的Capasso和Cho贝尔实验室的小组生产,该公司于1994年发明了QC激光器。与同样在这些飞行中飞行的同伴的铅盐二极管激光器相比,单模QC激光器冷却到82 K,产生更高的输出功率(10 mW),更窄的激光线宽(17 MHz),更高的测量精度(3倍)和更好的光谱稳定性(〜0.1 cm〜(-1) )K)。估计QC激光通道的灵敏度对应于甲烷的最小可检测混合比,约为十亿分之2体积。

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