Articles | Volume 19, issue 14
https://doi.org/10.5194/amt-19-4743-2026
https://doi.org/10.5194/amt-19-4743-2026
Research article
 | 
24 Jul 2026
Research article |  | 24 Jul 2026

Combined and autonomous online measurement of water isotopes in snowflakes and atmospheric water vapor in East Antarctica

Thomas Lauwers, Elise Fourré, Niels Dutrievoz, Cécile Agosta, Olivier Jossoud, Bénédicte Minster, Frédéric Prié, Olivier Cattani, Valérie Masson-Delmotte, Mathieu Casado, Christophe Genthon, and Amaëlle Landais

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Cited articles

Aemisegger, F., Spiegel, J. K., Pfahl, S., Sodemann, H., Eugster, W., and Wernli, H.: Isotope meteorology of cold front passages: A case study combining observations and modeling, Geophys. Res. Lett., 42, 5652–5660, https://doi.org/10.1002/2015GL063988, 2015. 
Affolter, S., Fleitmann, D., and Leuenberger, M.: New online method for water isotope analysis of speleothem fluid inclusions using laser absorption spectroscopy (WS-CRDS), Clim. Past, 10, 1291–1304, https://doi.org/10.5194/cp-10-1291-2014, 2014. 
Aubry, C., Delanoë, J., Groß, S., Ewald, F., Tridon, F., Jourdan, O., and Mioche, G.: Lidar–radar synergistic method to retrieve ice, supercooled water and mixed-phase cloud properties, Atmos. Meas. Tech., 17, 3863–3881, https://doi.org/10.5194/amt-17-3863-2024, 2024. 
Bagheri Dastgerdi, S., Behrens, M., Bonne, J.-L., Hörhold, M., Lohmann, G., Schlosser, E., and Werner, M.: Continuous monitoring of surface water vapour isotopic compositions at Neumayer Station III, East Antarctica, The Cryosphere, 15, 4745–4767, https://doi.org/10.5194/tc-15-4745-2021, 2021. 
Billault-Roux, A.-C., Ghiggi, G., Jaffeux, L., Martini, A., Viltard, N., and Berne, A.: Dual-frequency spectral radar retrieval of snowfall microphysics: a physics-driven deep-learning approach, Atmos. Meas. Tech., 16, 911–940, https://doi.org/10.5194/amt-16-911-2023, 2023. 
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Short summary
This study presents a new method to measure the isotopic composition of snowfall and atmospheric water vapor in Antarctica. With a single laser spectrometer, it enables continuous, high frequency observations without human intervention. Tests in East Antarctica show a very good agreement with conventionnal snow sampling. This new sampling method opens new opportunities to better understand snowfall formation, improve climate models, and refine the interpretation of ice core climate records.
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