Herman Daniel I, Mead Griffin, Giorgetta Fabrizio R, Baumann Esther, Malarich Nathan A, Washburn Brian R, Newbury Nathan R, Coddington Ian, Cossel Kevin C
Spectrum Technology and Research Division, National Institute of Standards and Technology, Boulder, Colorado 80305, United States of America.
Department of Physics, University of Colorado Boulder, Boulder, Colorado 80309, United States of America.
Atmos Meas Tech. 2023;16(17). doi: 10.5194/amt-16-4053-2023.
We present an open-path mid-infrared dual-comb spectroscopy (DCS) system capable of precise measurement of the stable water isotopologues HO and HDO. This system ran in a remote configuration at a rural test site for 3.75 months with 60% uptime and achieved a precision of < 2‰ on the normalized ratio of HO and HDO () in 1000s. Here, we compare the values from the DCS system to those from the National Ecological Observatory Network (NEON) isotopologue point sensor network. Over the multi-month campaign, the mean difference between the DCS values and the NEON values from a similar ecosystem is < 2‰ with a standard deviation of 18‰, which demonstrates the inherent accuracy of DCS measurements over a variety of atmospheric conditions. We observe time-varying diurnal profiles and seasonal trends that are mostly correlated between the sites on daily timescales. This observation motivates the development of denser ecological monitoring networks aimed at understanding regional- and synoptic-scale water transport. Precise and accurate open-path measurements using DCS provide new capabilities for such networks.
我们展示了一种能够精确测量稳定水同位素 HO 和 HDO 的开放路径中红外双梳光谱(DCS)系统。该系统在一个农村测试站点以远程配置运行了 3.75 个月,正常运行时间为 60%,并在 1000 秒内实现了 HO 和 HDO 归一化比率()的精度小于 2‰。在此,我们将 DCS 系统的 值与来自国家生态观测网络(NEON)同位素点传感器网络的值进行比较。在为期数月的活动中,DCS 值与来自类似生态系统的 NEON 值之间的平均差异小于 2‰,标准差为 18‰,这证明了 DCS 在各种大气条件下测量的固有准确性。我们观察到随时间变化的日变化曲线和季节趋势,这些在每日时间尺度上大多在各站点之间具有相关性。这一观察结果推动了旨在理解区域和天气尺度水传输的更密集生态监测网络的发展。使用 DCS 进行精确和准确的开放路径测量为此类网络提供了新的能力。