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A Hollow-Waveguide Gas Correlation Radiometer for Ultra-Precise Column Measurements of Formaldehyde on Mars

机译:空心波导气体相关辐射计,用于火星上甲醛的超精密柱测量

摘要

We present preliminary results in the development of a miniaturized gas correlation radiometer that implements a hollow-core optical fiber (hollow waveguide) gas correlation cell. The substantial reduction in mass and volume of the gas correlation cell makes this technology appropriate for an orbital mission -- capable of pinpointing sources of trace gases in the Martian atmosphere. Here we demonstrate a formaldehyde (H2CO) sensor and report a detection limit equivalent to approximately 30 ppb in the Martian atmosphere. The relative simplicity of the technique allows it to be expanded to measure a range of atmospheric trace gases of interest on Mars such as methane (CH4), water vapour (H2O), deuterated water vapour (HDO), and methanol (CH3OH). Performance of a formaldehyde instrument in a Mars orbit has been simulated assuming a 3 meter long, 1000 micron inner diameter hollow-core fiber gas correlation cell, a 92.8 degree sun-synchronous orbit from 400 km with a horizontal sampling scale of 10 km x 10 km. Initial results indicate that for one second of averaging, a detection limit of 1 ppb is possible.
机译:我们在开发实现空心光纤(空心波导)气体相关单元的小型气体相关辐射计中提出了初步的结果。气体相关电池的质量和体积的大幅减少,使该技术适合于轨道飞行任务-能够精确定位火星大气中的痕量气体来源。在这里,我们演示了甲醛(H2CO)传感器,并报告了在火星大气中的检出限约为30 ppb。该技术的相对简单性使其可以扩展到测量火星上感兴趣的大气痕量气体的范围,例如甲烷(CH4),水蒸气(H2O),氘化水蒸气(HDO)和甲醇(CH3OH)。假设在长3米,内径为1000微米的空心纤维气体相关池,400 km的92.8度太阳同步轨道,水平采样比例为10 km x 10的情况下,模拟了甲醛仪器在火星轨道上的性能公里初步结果表明,对于平均时间的一秒,检测限为1 ppb是可能的。

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