Publications

2020

Munksgaard, NC, Zwart, C, Haig, J, Cernusak, LA, Bird, MI. Coupled rainfall and water vapour stable isotope time series reveal tropical atmospheric processes on multiple timescales. Hydrological Processes. 2020; 34: 111– 124. https://doi.org/10.1002/hyp.13576

Mercer, J.J., Liefert, D.T. and Williams, D.G. (2020), Atmospheric vapor and precipitation are not in isotopic equilibrium in a continental mountain environment. Hydrological Processes. Accepted Author Manuscript. doi:10.1002/hyp.13775

2019

Wei, Z and Lee, X (2019). The utility of near-surface water vapor deuterium excess as an indicator of atmospheric moisture source. Journal of Hydrology.

Salmon, O.E., Welp, L.R., Baldwin, M.E., Hajny, K.D., Stirm, B.H. and Shepson, P.B., (2019). Vertical profile observations of water vapor deuterium excess in the lower troposphere. Atmospheric Chemistry and Physics, 19(17), pp.11525-11543.

Kim, S., Han, Y., Hur, S.D., Yoshimura, K. and Lee, J., 2019. Relating Moisture Transport to Stable Water Vapor Isotopic Variations of Ambient Wintertime along the Western Coast of Korea. Atmosphere, 10(12), p.806.

2018

Lai, X., Wright, J., Huang, W., Liang, J., Lin, G., & Zhu, S. (2018). Contributions of Atmospheric Transport and Rain–Vapor Exchange to Near-Surface Water Vapor in the Zhanjiang Mangrove Reserve, Southern China: An Isotopic Perspective. Atmosphere, 9(9). 

Fiorella, R. P., Poulsen, C. J., and Matheny, A. M. (2018), Seasonal patterns of water cycling in a deep, continental mountain valley inferred from stable water vapor isotopes. Journal of Geophysical Research: Atmospheres, 123. 

Xiao, W., Wei, Z., & Wen, X. (2018). Evapotranspiration partitioning at the ecosystem scale using the stable isotope method—A review. Agricultural and Forest Meteorology, 263, 346-361.

Xiao, W., Qian, Y., Lee, X., Wang, W., Zhang, M., Wen, X., … Zhang, F. (2018). Hydrologic implications of the isotopic kinetic fractionation of open-water evaporation. Science China Earth Sciences

Wei et al. (2018), A global database of water vapor isotopes measured with high temporal resolution infrared laser spectroscopy, In review

2017

Benetti, M., et al. (2017), Stable isotopes in the atmospheric marine boundary layer water vapour over the Atlantic Ocean, 2012–2015, Scientific Data, 4, 160128, doi: 10.1038/sdata.2016.128

Christner, E., Kohler, M., and Schneider, M. (2017), The influence of snow sublimation and meltwater evaporation on δD of water vapor in the atmospheric boundary layer of central Europe, Atmospheric Chemistry and Physics, 17, 1207-1225, doi: 10.5194/acp-17-1207-2017.

Liang, M.C., Mahata, S., Laskar, A.H. and Bhattacharya, S.K., 2017. Spatiotemporal Variability of Oxygen Isotope Anomaly in near Surface Air CO2 over Urban, Semi-Urban and Ocean Areas in and around Taiwan. Aerosol and Air Quality Research, 17(3), pp.706-720.

Rangarajan, R., Laskar, A.H., Bhattacharya, S.K., Shen, C.C. and Liang, M.C. (2017), An insight into the western Pacific wintertime moisture sources using dual water vapor isotopes, Journal of hydrology, 547, pp.111-123.

Steen-Larsen, H. C., C. Risi, M. Werner, K. Yoshimura, and V. Masson-Delmotte (2017), Evaluating the skills of isotope-enabled general circulation models against in situ atmospheric water vapor isotope observations, Journal of Geophysical Research: Atmospheres, 122(1), 246-263, doi: 10.1002/2016JD025443.

Sodemann, H., Aemisegger, F., Pfahl, S., Bitter, M., Corsmeier, U., Feuerle, T., Graf, P., Hankers, R., Hsiao, G., Schulz, H., Wieser, A., and Wernli, H. (2017), The stable isotopic composition of water vapour above Corsica during the HyMeX SOP1 campaign: insight into vertical mixing processes from lower-tropospheric survey flights, Atmospheric Chemistry and Physics, 17, 6125-6151, doi: 10.5194/acp-17-6125-2017.

Xiao, W., Lee, X., Hu, Y., Liu, S., Wang, W., Wen, X., … Xie, C. (2017). An Experimental Investigation of Kinetic Fractionation of Open-Water Evaporation Over a Large Lake. Journal of Geophysical Research: Atmospheres, 122(21), 11,651-611,663. 

2016

Berkelhammer, M., D. C. Noone, T. E. Wong, S. P. Burns, J. F. Knowles, A. Kaushik, P. D. Blanken, and M. W. Williams (2016), Convergent approaches to determine an ecosystem’s transpiration fraction, Global Biogeochemical Cycles, 30(6), 933-951, doi: 10.1002/2016gb005392.

Casado, M., et al. (2016), Continuous measurements of isotopic composition of water vapour on the East Antarctic Plateau, Atmospheric Chemistry and Physics, 16(13), 8521-8538, doi: 10.5194/acp-16-8521-2016.

González, Y., Schneider, M., Dyroff, C., Rodríguez, S., Christner, E., García, O. E., Cuevas, E., Bustos, J. J., Ramos, R., Guirado-Fuentes, C., Barthlott, S., Wiegele, A., and Sepúlveda, E. (2016), Detecting moisture transport pathways to the subtropical North Atlantic free troposphere using paired H2O-δD in situ measurements, Atmospheric Chemistry and Physics, 16, 4251-4269, doi: 10.5194/acp-16-4251-2016.

Griffis, T. J., et al. (2016), Investigating the source, transport, and isotope composition of water vapor in the planetary boundary layer, Atmospheric Chemistry and Physics, 16(8), 5139-5157, doi: 10.5194/acp-16-5139-2016.

Kurita, N., N. Hirasawa, S. Koga, J. Matsushita, H.-C. Steen-Larsen, V. Masson-Delmotte, and Y. Fujiyoshi (2016), Influence of large-scale  atmospheric circulation on marine air intrusion toward the East Antarctic coast,  Geophysical Research Letters, 43, 9298-9305, do:10.1002/2016GL070246.

Kurita, N., N. Hirasawa, S. Koga, J. Matsushita, H.-C. Steen-Larsen, V. Masson-Delmotte, and Y. Fujiyoshi (2016), Identification of air masses responsible for warm events on the East Antarctic coast,  SOLA, 12, 307-313, doi:10.2151/sola.2016-060.
 
Ritter, F., Steen-Larsen, H. C., Werner, M., Masson-Delmotte, V., Orsi, A., Behrens, M., Birnbaum, G., Freitag, J., Risi, C., and Kipfstuhl, S. (2016), Isotopic exchange on the diurnal scale between near-surface snow and lower atmospheric water vapor at Kohnen station, East Antarctica, The Cryosphere, 10, 1647-1663, https://doi.org/10.5194/tc-10-1647-2016.
 
Schneider, M., et al. (2016), Accomplishments of the MUSICA project to provide accurate, long-term, global and high-resolution observations of tropospheric {H2O,δD} pairs – a review, Atmospheric Measurement Techniques, 9, 2845-2875, doi: 10.5194/amt-9-2845-2016.
 

Xiao, W., et al. (2016), Spatial distribution and temporal variability of stable water isotopes in a large and shallow lake, Isotopes in environmental and health studies, 52(4-5), 443-454, doi: 10.1080/10256016.2016.1147442.

Wei, Z. W., K. Yoshimura, A. Okazaki, K. Ono, W. Kim, M. Yokoi, and C. T. Lai (2016), Understanding the variability of water isotopologues in near-surface atmospheric moisture over a humid subtropical rice paddy in Tsukuba, Japan, Journal of Hydrology, 533, 91-102, doi: 10.1016/j.jhydrol.2015.11.044.

Wen, X. F., B. Yang, X. M. Sun, and X. Lee (2016), Evapotranspiration partitioning through in-situ oxygen isotope measurements in an oasis cropland, Agricultural and Forest Meteorology, 230, 89-96, doi: 10.1016/j.agrformet.2015.12.003.

2015

Delattre, H., C. Vallet-Coulomb, and C. Sonzogni (2015), Deuterium excess in the atmospheric water vapour of a Mediterranean coastal wetland: regional vs. local signatures, Atmospheric Chemistry and Physics, 15(17), 10167-10181, doi: 10.5194/acp-15-10167-2015.

Dyroff, C., Sanati, S., Christner, E., Zahn, A., Balzer, M., Bouquet, H., McManus, J. B., González-Ramos, Y., and Schneider, M. (2015): Airborne in situ vertical profiling of HDO / H216O in the subtropical troposphere during the MUSICA remote sensing validation campaign, Atmospheric Measurement Techniques, 8, 2037-2049, doi: 10.5194/amt-8-2037-2015.

Kurita, N., Y. Fujiyoshi, T. Nakayama, Y. Matsumi, and H. Kitagawa (2015), East Asian Monsoon controls on the inter-annual variability in precipitation isotope ratio in Japan, Climate of the Past, 11(2), 339-353, doi: 10.5194/cp-11-339-2015.

Steen-Larsen, H. C.A. E. SveinbjörnsdottirTh. JonssonF. RitterJ.-L. BonneV. Masson-DelmotteH. SodemannT. BlunierD. Dahl-Jensen, and B. M. Vinther (2015), Moisture sources and synoptic to seasonal variability of North Atlantic water vapor isotopic compositionJ. Geophys. Res. Atmos.12057575774. doi: 10.1002/2015JD023234.

Munksgaard, N. C., Zwart, C., Kurita, N., Bass, A., Nott, J., & Bird, M. I. (2015). Stable isotope anatomy of tropical cyclone Ita, North-Eastern Australia, April 2014. PLoS One, 10(3), e0119728. doi:10.1371/journal.pone.0119728

Wei, Z. W., K. Yoshimura, A. Okazaki, W. Kim, Z. F. Liu, and M. Yokoi (2015), Partitioning of evapotranspiration using high-frequency water vapor isotopic measurement over a rice paddy field, Water Resources Research, 51(5), 3716-3729, doi: 10.1002/2014wr016737.

Yang, B., X. Wen, and X. Sun (2015), Seasonal variations in depth of water uptake for a subtropical coniferous plantation subjected to drought in an East Asian monsoon region, Agricultural and Forest Meteorology, 201, 218-228, doi: http://doi.org/10.1016/j.agrformet.2014.11.020.

2014

Aemisegger, F., S. Pfahl, H. Sodemann, I. Lehner, S. I. Seneviratne, and H. Wernli (2014), Deuterium excess as a proxy for continental moisture recycling and plant transpiration, Atmospheric Chemistry and Physics, 14(8), 4029-4054, doi: 10.5194/acp-14-4029-2014.

Bonne, J.-L., Masson-Delmotte, V., Cattani, O., Delmotte, M., Risi, C., Sodemann, H., and Steen-Larsen, H. C. (2014), The isotopic composition of water vapour and precipitation in Ivittuut, southern Greenland, Atmospheric Chemistry and Physics, 14, 4419-4439, https://doi.org/10.5194/acp-14-4419-2014

Good, S. P.K. SoderbergK. GuanE. G. KingT. M. Scanlon, and K. K. Caylor (2014), δ2H isotopic flux partitioning of evapotranspiration over a grass field following a water pulse and subsequent dry downWater Resources Research, 5014101432, doi:10.1002/2013WR014333.

Hu, Z. M., X. F. Wen, X. M. Sun, L. H. Li, G. R. Yu, X. H. Lee, and S. G. Li (2014), Partitioning of evapotranspiration through oxygen isotopic measurements of water pools and fluxes in a temperate grassland, Journal of Geophysical Research-Biogeosciences, 119(3), 358-371, doi: 10.1002/2013jg002367.

Huang, L., and X. Wen (2014), Temporal variations of atmospheric water vaporδD andδ18O above an arid artificial oasis cropland in the Heihe River Basin, Journal of Geophysical Research: Atmospheres, 119(19), 11,456-411,476, doi: 10.1002/2014jd021891.

Laskar  A.H., J.C. Huang, S.C. Hsu, S.K. Bhattacharya, C.H. Wang, M.C. Liang (2014), Stable isotopic composition of near surface atmospheric water vapor and rain-vapor interaction in Taipei, Taiwan, Journal of Hydrology, 519, 2091-2100, 10.1016/j.jhydrol.2014.10.017.

Steen-Larsen, H. C., Masson-Delmotte, V., Hirabayashi, M., Winkler, R., Satow, K., Prié, F., Bayou, N., Brun, E., Cuffey, K. M., Dahl-Jensen, D., Dumont, M., Guillevic, M., Kipfstuhl, S., 25 Landais, A., Popp, T., Risi, C., Steffen, K., Stenni, B., and Sveinbjörnsdottír, A. E. (2014). What controls the isotopic composition of Greenland surface snow?, Climate Past, 10, 377–392.

Steen-Larsen, H. C., A. E. Sveinbjornsdottir, A. J. Peters, V. Masson-Delmotte, M. P. Guishard, G. Hsiao, J. Jouzel, D. Noone, J. K. Warren, and J. W. C. White (2014), Climatic controls on water vapor deuterium excess in the marine boundary layer of the North Atlantic based on 500 days of in situ, continuous measurements, Atmospheric Chemistry and Physics, 14(15), 7741-7756, doi: 10.5194/acp-14-7741-2014.

2013

 

Steen-Larsen, H. C., Johnsen, S. J., Masson-Delmotte, V., Stenni, B., Risi, C., Sodemann, H., Balslev-Clausen, D., Blunier, T., Dahl-Jensen, D., Ellehøj, M. D., Falourd, S., Grindsted, A., Gkinis, V., Jouzel, J., Popp, T., Sheldon, S., Simonsen, S. B., Sjolte, J., Steffensen, J. P., Sperlich, P., Sveinbjörnsdóttir, A. E., Vinther, B. M., and White, J. W. C., (2013), Continuous monitoring of summer surface water vapor isotopic composition above the Greenland Ice Sheet,  Atmospheric Chemistry and Physics, 13, 4815-4828, doi: 10.5194/acp-13-4815-2013.

2012

Aemisegger, F., P. Sturm, P. Graf, H. Sodemann, S. Pfahl, A. Knohl, and H. Wernli (2012), Measuring variations of delta O-18 and delta H-2 in atmospheric water vapour using two commercial laser-based spectrometers: an instrument characterisation study, Atmospheric Measurement Techniques, 5(7), 1491-1511, doi: 10.5194/amt-5-1491-2012.

Good, S. P., K. Soderberg, L. Wang, and K. K. Caylor (2012), Uncertainties in the assessment of the isotopic composition of surface fluxes: A direct comparison of techniques using laser-based water vapor isotope analyzers, ​Journal of Geophysical Research: Atmospheres, 117, D15301.

Santos, E., C. Wagner-Riddle, X. Lee, J. Warland, S. Brown, R. Staebler, P. Bartlett, and K. Kim (2012), Use of the isotope flux ratio approach to investigate the C18O16O and 13CO2 exchange near the floor of a temperate deciduous forest, Biogeosciences, 9(7), 2385-2399, doi: 10.5194/bg-9-2385-2012.

Welp, L. R., X. H. Lee, T. J. Griffis, X. F. Wen, W. Xiao, S. G. Li, X. M. Sun, Z. M. Hu, M. V. Martin, and J. P. Huang (2012), A meta-analysis of water vapor deuterium-excess in the midlatitude atmospheric surface layer,  Global Biogeochemical Cycles, 26, doi: 10.1029/2011gb004246.

Wen, X. F., X. Lee, X. M. Sun, J. L. Wang, Z. M. Hu, S. G. Li, and G. R. Yu (2012), Dew water isotopic ratios and their relationships to ecosystem water pools and fluxes in a cropland and a grassland in China, Oecologia, 168(2), 549-561, doi: 10.1007/s00442-011-2091-0.    

Xiao, W., X. H. Lee, X. F. Wen, X. M. Sun, and S. C. Zhang (2012), Modeling biophysical controls on canopy foliage water 18O enrichment in wheat and corn, Global Change Biology, 18(5), 1769-1780, doi: 10.1111/j.1365-2486.2012.02648.x.

2011

Griffis, T. J., X. Lee, J. M. Baker, K. Billmark, N. Schultz, M. Erickson, X. Zhang, J. Fassbinder, W. Xiao, and N. Hu (2011), Oxygen isotope composition of evapotranspiration and its relation to C4photosynthetic discrimination, Journal of Geophysical Research, 116(G1), doi: 10.1029/2010jg001514.

Wen, X.-F., X. Lee, X.-M. Sun, J.-L. Wang, Y.-K. Tang, S.-G. Li, and G.-R. Yu (2011), Intercomparison of Four Commercial Analyzers for Water Vapor Isotope Measurement, Journal of Atmospheric and Oceanic Technology, 29(2), 235-247, doi: 10.1175/JTECH-D-10-05037.1.

2010

Griffis, T. J., et al. (2010), Determining the Oxygen Isotope Composition of Evapotranspiration Using Eddy Covariance, Boundary-layer meteorology, 137(2), 307-326, doi: 10.1007/s10546-010-9529-5.

Wen, X. F., S. C. Zhang, X. M. Sun, G. R. Yu, and X. Lee (2010), Water vapor and precipitation isotope ratios in Beijing, China, Journal of Geophysical Research: Atmospheres, 115, doi: 10.1029/2009jd012408.

Xiao, W., X. Lee, T. J. Griffis, K. Kim, L. R. Welp, and Q. Yu (2010), A modeling investigation of canopy-air oxygen isotopic exchange of water vapor and carbon dioxide in a soybean field, Journal of Geophysical Research: Biogeosciences, 115(G1), doi: 115(G1), doi: 10.1029/2009jg001163.

2009

Lee, X. H., T. J. Griffis, J. M. Baker, K. A. Billmark, K. Kim, and L. R. Welp (2009), Canopy-scale kinetic fractionation of atmospheric carbon dioxide and water vapor isotopes, Global Biogeochemical Cycles, 23(1),  doi: 10.1029/2008GB003331

2008

Welp, L. R., X. Lee, K. Kim, T. J. Griffis, K. A. Billmark, and J. M. Baker (2008), deltaO of water vapour, evapotranspiration and the sites of leaf water evaporation in a soybean canopy, Plant, Cell & Environment, 31(9), 1214-1228, doi: 10.1111/j.1365-3040.2008.01826.x.

Wen, X.-F., X.-M. Sun, S.-C. Zhang, G.-R. Yu, S. D. Sargent, and X. Lee (2008), Continuous measurement of water vapor D/H and 18O/16O isotope ratios in the atmosphere, Journal of Hydrology, 349(3-4), 489-500, doi: 10.1016/j.jhydrol.2007.11.021.

2007

Lee, X. H., K. Kim, and R. Smith (2007), Temporal variations of the (18)O/(16)O signal of the whole-canopy transpiration in a temperate forest, Global Biogeochemical Cycles, 21(3), doi: 10.1029/2006GB002871

2006

Lee, H., R. Smith, and J. Williams (2006), Water vapour O-18/O-16 isotope ratio in surface air in New England, USA, Tellus B, 58(4), 293-304, doi: 10.1111/j.1600-0889.2006.00191.x.

Zhang, J., T. J. Griffis, and J. M. Baker (2006), Using continuous stable isotope measurements to partition net ecosystem CO2 exchange, Plant, Cell & Environment, 29(4), 483-496, doi: 10.1111/j.1365-3040.2005.01425.x.