Chemistry & Climate Processes: Products

SWOOSH: Stratospheric Water and OzOne Satellite Homogenized data set

Publications:

Publications using SWOOSH

2021

Davis, S.M., R. Damadeo, D. Flittner, K.H. Rosenlof, M. Park, W.J. Randel, E.G. Hall, D. Huber, D.F. Hurst, A.F. Jordan, S. Kizer, L.F. Millan, H. Selkirk, G. Taha, K.A. Walker, and H. Vömel, Validation of SAGE III/ISS solar water vapor data with correlative satellite and balloon-borne measurements, Journal of Geophysical Research, doi:10.1029/2020JD033803, 2021.

Garfinkel, C.I., O. Harari, S.Z. Ziv, J. Rao, O. Morgenstern, G. Zeng, S. Tilmes, D. Kinnison, F.M. O'Connor, N. Butchart, M. Deushi, P. Jöckel, A. Pozzer, and S. Davis, Influence of the El Niño–Southern Oscillation on entry stratospheric water vapor in coupled chemistry-ocean CCMI and CMIP6 models, Atmospheric Chemistry and Physics, doi:10.5194/acp-21-3725-2021, 2021.

Keeble, J., Hassler, B., Banerjee, A., Checa-Garcia, R., Chiodo, G., Davis, S., Eyring, V., Griffiths, P. T., Morgenstern, O., Nowack, P., Zeng, G., Zhang, J., Bodeker, G., Burrows, S., Cameron-Smith, P., Cugnet, D., Danek, C., Deushi, M., Horowitz, L. W., Kubin, A., Li, L., Lohmann, G., Michou, M., Mills, M. J., Nabat, P., Olivié, D., Park, S., Seland, Ø., Stoll, J., Wieners, K.-H., and Wu, T., Evaluating stratospheric ozone and water vapour changes in CMIP6 models from 1850 to 2100, Atmospheric Chemistry and Physics, doi:10.5194/acp-21-5015-2021, 2021.

Lu, J.P., F. Xie, H.Y. Tian, and J.L. Luo, Impacts of ozone changes in the tropopause layer on stratospheric water vapor, Atmosphere, doi:10.3390/atmos12030291, 2021.

Zhang, J.K., C.Y. Zhang, K.Q. Zhang, M. Xu, J.K. Duan, M.P. Chipperfield, W.H. Feng, S.Y. Zhao, and F. Xie, The role of chemical processes in the quasi-biennial oscillation (QBO) signal in stratospheric ozone, Atmospheric Environment, doi:10.1016/j.atmosenv.2020.117906, 2021.

Smith, J.W., P.H. Haynes, A.C. Maycock, N. Butchart, and A.C. Bushell, Sensitivity of stratospheric water vapour to variability in tropical tropopause temperatures and large-scale transport, Atmospheric Chemistry and Physics, doi:10.5194/acp-21-2469-2021, 2021.

2020

Ball, W.T., G. Chiodo, M. Abalos, J. Alsing, and A. Stenke, Inconsistencies between chemistry-climate models and observed lower stratospheric ozone trends since 1998, Atmospheric Chemistry and Physics, doi:10.5194/acp-20-9737-2020, 2020.

Davis, S.M., K.H. Rosenlof, D.F. Hurst, H. Vömel, and H.B. Selkirk, Stratospheric water vapor [in "State of the Climate in 2019"], Bulletin of the American Meteorological Society, doi:10.1175/2020BAMSStateoftheClimate.1, 2020.

Dong, W.H., Y.L. Lin, M.H. Zhang, and X.M. Huang, Footprint of Tropical Mesoscale Convective System Variability on Stratospheric Water Vapor, Geophysical Research Letters, doi:10.1029/2019gl086320, 2020.

Evan, S., J. Brioude, K.H. Rosenlof, S.M. Davis, H. Vömel, D. Héron, F. Posny, J.-M. Metzger, V. Duflot, G. Payen, H. Vér&‌egrave;mes, P. Keckhut, and J.-P. Cammas, Effect of deep convection on the TTL composition over the Southwest Indian Ocean during austral summer, Atmospheric Chemistry and Physics, doi:10.5194/acp-20-10565-2020, 2020.

Kilian, M., S. Brinkop, and P. Jockel, Impact of the eruption of Mt Pinatubo on the chemical composition of the stratosphere, Atmospheric Chemistry and Physics, doi:10.5194/acp-20-11697-2020, 2020.

Lu, J.P., F. Xie, C. Sun, J.L. Luo, Q.F. Cai, J.K. Zhang, J. Li, and H.Y. Tian, Analysis of factors influencing tropical lower stratospheric water vapor during 1980-2017, Npj Climate and Atmospheric Science, doi:10.1038/s41612-020-00138-7, 2020.

Ma, X., and F. Xie, Predicting April Precipitation in the Northwestern United States Based on Arctic Stratospheric Ozone and Local Circulation, Frontiers in Earth Science, doi:10.3389/feart.2020.00056, 2020.

Orbe, C., K. Wargan, S. Pawson, and L.D. Oman, Mechanisms Linked to Recent Ozone Decreases in the Northern Hemisphere Lower Stratosphere, Journal of Geophysical Research-Atmospheres, doi:10.1029/2019jd031631, 2020.

Szelag, M., V. Sofieva, D. Degenstein, C. Roth, S. Davis, and L. Froidevaux, Seasonal stratospheric ozone trends over 2000-2018 derived from several merged data sets, Atmospheric Chemistry and Physics, doi:10.5194/acp-20-7035-2020, 2020.

Weber, M., W. Steinbrecht, C. Arosio, R. van der A, S. M. Frith, J. Anderson, M. Coldewey-Egbers, S. Davis, D. Degenstein, V. E. Fioletov, L. Froidevaux, D. Hubert, C. S. Long, D. Loyola, A. Rozanov, C. Roth, V. Sofieva, K. Tourpali, R. Wang, and J. D. Wild, Stratospheric ozone [in "State of the Climate in 2019"], Bulletin of the American Meteorological Society, doi:10.1175/2020BAMSStateoftheClimate.1, 2020.

Xie, F., X. Ma, J. Li, W. Tian, C. Ruan, and C. Sun, Using observed signals from the Arctic stratosphere and Indian Ocean to predict April-May precipitation in central China, Journal Of Climate, doi:10.1175/JCLI-D-18-0512.1, 2020.

Xie, F., J.K. Zhang, X.T. Li, J. Li, T. Wang, and M. Xu, Independent and joint influences of eastern Pacific El Nino-southern oscillation and quasi-biennial oscillation on Northern Hemispheric stratospheric ozone, International Journal of Climatology, doi:10.1002/joc.6519, 2020.

2019

Ball, W.T., J. Alsing, J. Staehelin, S.M. Davis, L. Froidevaux, and T. Peter, Stratospheric ozone trends for 1985–2018: Sensitivity to recent large variability, Atmospheric Chemistry and Physics, doi:10.5194/acp-19-12731-2019, 2019.

Ball, W.T., E.V. Rozanov, J. Alsing, D.R. Marsh, F. Tummon, D.J. Mortlock, D. Kinnison, and J.D. Haigh, The Upper Stratospheric Solar Cycle Ozone Response, Geophysical Research Letters, doi:10.1029/2018gl081501, 2019.

Davis, S.M., K.H. Rosenlof, D.F. Hurst, H.B. Selkirk, and H. Vömel, Stratospheric water vapor [in "State of the Climate in 2018"], Bulletin of the American Meteorological Society, doi:10.1175/2019BAMSStateoftheClimate.1, 2019.

Froidevaux, L., D.E. Kinnison, R. Wang, J. Anderson, and R.A. Fuller, Evaluation of CESM1 (WACCM) free-running and specified dynamics atmospheric composition simulations using global multispecies satellite data records, Atmospheric Chemistry and Physics, doi:10.5194/acp-19-4783-2019, 2019.

Harari, O., C.I. Garfinkel, S.Z. Ziv, O. Morgenstern, G. Zeng, S. Tilmes, D. Kinnison, M. Deushi, P. Jo&puml;ckel, A. Pozzer, F.M. O'Connor, and S.M. Davis, Influence of Arctic stratospheric ozone on surface climate in CCMI models, Atmospheric Chemistry and Physics, doi:10.5194/acp-19-9253-2019, 2019.

Hogberg, C., S. Lossow, F. Khosrawi, R. Bauer, K.A. Walker, P. Eriksson, D.P. Murtagh, G.P. Stiller, J. Steinwagner, and Q. Zhang, The SPARC water vapour assessment II: profile-to-profile and climatological comparisons of stratospheric delta D(H2O) observations from satellite, Atmospheric Chemistry and Physics, doi:10.5194/acp-19-2497-2019, 2019.

Lin, J.L., and T.T. Qian, Impacts of the ENSO Lifecycle on Stratospheric Ozone and Temperature, Geophysical Research Letters, doi:10.1029/2019gl083697, 2019.

Lu, J.P., F. Xie, W.S. Tian, J.P. Li, W.H. Feng, M. Chipperfield, J.K. Zhang, and X. Ma, Interannual Variations in Lower Stratospheric Ozone During the Period 1984-2016, Journal of Geophysical Research-Atmospheres, doi:10.1029/2019jd030396, 2019.

Ma, X., F. Xie, J.P. Li, X.L. Zheng, W.S. Tian, R.Q. Ding, C. Sun, and J.K. Zhang, Effects of Arctic stratospheric ozone changes on spring precipitation in the northwestern United States, Atmospheric Chemistry and Physics, doi:10.5194/acp-19-861-2019, 2019.

Ming, S.G., W.K. Wang, and S.G. Jin, Variability of temperature and ozone in the upper troposphere and lower stratosphere from multi-satellite observations and reanalysis data, Atmospheric Chemistry and Physics, doi:10.5194/acp-19-6659-2019, 2019.

Tao, M.C., P. Konopka, F. Ploeger, X.L. Yan, J.S. Wright, M. Diallo, S. Fueglistaler, and M. Riese, Multitimescale variations in modeled stratospheric water vapor derived from three modern reanalysis products, Atmospheric Chemistry and Physics, doi:10.5194/acp-19-6509-2019, 2019.

Tzallas, V., N. Hatzianastassiou, N. Benas, J.F. Meirink, C. Matsoukas, P. Stackhouse, and I. Vardavas, Evaluation of CLARA-A2 and ISCCP-H Cloud Cover Climate Data Records over Europe with ECA&D Ground-Based Measurements, Remote Sensing, doi:10.3390/rs11020212, 2019.

Wang, W.K., K. Matthes, W.S. Tian, W. Park, S.G. Ming, and A.J. Ding, Solar impacts on decadal variability of tropopause temperature and lower stratospheric (LS) water vapour: a mechanism through ocean-atmosphere coupling, Climate Dynamics, doi:10.1007/s00382-018-4464-0, 2019.

Weber, M., W. Steinbrecht, C. Arosio, R. van der A, S. M. Frith, J. Anderson, M. Coldewey-Egbers, S. Davis, D. Degenstein, V. E. Fioletov, L. Froidevaux, D. Hubert, C. S. Long, D. Loyola, A. Rozanov, C. Roth, V. Sofieva, K. Tourpali, R. Wang, and J. D. Wild, Stratospheric ozone [in "State of the Climate in 2018"], Bulletin of the American Meteorological Society, doi:10.1175/2019BAMSStateoftheClimate.1, 2019.

2018

Ball, W.T., J. Alsing, D.J. Mortlock, J. Staehelin, J.D. Haigh, T. Peter, F. Tummon, R. Stübi, A. Stenke, J. Anderson, A. Bourassa, S. Davis, D. Degenstein, S. Frith, L. Froidevaux, R. C, V. Sofieva, R. Wang, J. Wild, P. Yu, J. Ziemke, and E.V. Rozanov, Evidence for a continuous decline in lower stratospheric ozone offsetting ozone layer recovery, Atmospheric Chemistry and Physics, doi:10.5194/acp-18-1379-2018, 2018.

Bandoro, J., S. Solomon, B.D. Santer, D.E. Kinnison, and M.J. Mills, Detectability of the impacts of ozone-depleting substances and greenhouse gases upon stratospheric ozone accounting for nonlinearities in historical forcings, Atmospheric Chemistry and Physics, doi:10.5194/acp-18-143-2018, 2018.

Davis, S.M., K.H. Rosenlof, D.F. Hurst, H.B. Selkirk, and H. Vömel, Stratospheric water vapor [in "State of the Climate in 2017"], Bulletin of the American Meteorological Society, doi:10.1175/2018BAMSStateoftheClimate.1, 2018.

de la Camara, A., M. Abalos, P. Hitchcock, N. Calvo, and R.R. Garcia, Response of Arctic ozone to sudden stratospheric warmings, Atmospheric Chemistry and Physics, doi:10.5194/acp-18-16499-2018, 2018.

Garfinkel, C.I., A. Gordon, L.D. Oman, F. Li, S. Davis, and S. Pawson, Nonlinear response of tropical lower stratospheric temperature and water vapor to ENSO, Atmospheric Chemistry and Physics, doi:10.5194/acp-18-4597-2018, 2018.

Hassler, B., S. Kremser, G. Bodeker, J. Lewis, K. Nesbit, S.M. Davis, M.P. Chipperfield, S.S. Dhomse, and M. Dameris, An updated version of a gap-free monthly mean zonal mean ozone database, Earth System Science Data, doi:10.5194/essd-10-1473-2018, 2018.

Oh, J., S.W. Son, K. Williams, D. Walters, J. Kim, M. Willett, P. Earnshaw, A. Bushell, Y. Kim, and J. Kim, Ozone sensitivity of tropical upper-troposphere and stratosphere temperature in the MetOffice Unified Model, Quarterly Journal of the Royal Meteorological Society, doi:10.1002/qj.3346, 2018.

Steinbrecht, W., M.I. Hegglin, N. Harris, and M. Weber, Is global ozone recovering?, Comptes Rendus Geoscience, doi:10.1016/j.crte.2018.07.012, 2018.

Stone, K.A., S. Solomon, and D.E. Kinnison, On the Identification of Ozone Recovery, Geophysical Research Letters, doi:10.1029/2018gl077955, 2018.

Sukhodolov, T., J.X. Sheng, A. Feinberg, B.P. Luo, T. Peter, L. Revell, A. Stenke, D.K. Weisenstein, and E. Rozanov, Stratospheric aerosol evolution after Pinatubo simulated with a coupled size-resolved aerosol-chemistry-climate model, SOCOL-AERv1.0, Geoscientific Model Development, doi:10.5194/gmd-11-2633-2018, 2018.

Weber, M., W. Steinbrecht, C. Arosio, R. van der A, S. M. Frith, J. Anderson, M. Coldewey-Egbers, S. Davis, D. Degenstein, V. E. Fioletov, L. Froidevaux, D. Hubert, C. S. Long, D. Loyola, A. Rozanov, C. Roth, V. Sofieva, K. Tourpali, R. Wang, and J. D. Wild, Stratospheric ozone [in "State of the Climate in 2017"], Bulletin of the American Meteorological Society, doi:10.1175/2018BAMSStateoftheClimate.1, 2018.

Wilka, C., K. Shah, K. Stone, S. Solomon, D. Kinnison, M. Mills, A. Schmidt, and R.R. Neely, On the Role of Heterogeneous Chemistry in Ozone Depletion and Recovery, Geophysical Research Letters, doi:10.1029/2018gl078596, 2018.

Xie, F., J.P. Li, C. Sun, R.Q. Ding, N. Xing, Y. Yang, X. Zhou, and X. Ma, Improved Global Surface Temperature Simulation using Stratospheric Ozone Forcing with More Accurate Variability, Scientific Reports, doi:10.1038/s41598-018-32656-z, 2018.

Xie, F., X. Ma, J.P. Li, J.L. Huang, W.S. Tian, J.K. Zhang, Y.Y. Hu, C. Sun, X. Zhou, J. Feng, and Y. Yang, An advanced impact of Arctic stratospheric ozone changes on spring precipitation in China, Climate Dynamics, doi:10.1007/s00382-018-4402-1, 2018.

Xie, F., X. Zhou, J.P. Li, Q.L. Chen, J.K. Zhang, Y. Li, R.Q. Ding, J.Q. Xue, and X. Ma, Effect of the Indo-Pacific Warm Pool on Lower-Stratospheric Water Vapor and Comparison with the Effect of ENSO, Journal of Climate, doi:10.1175/jcli-d-17-0575.1, 2018.

2017

Davis, S.M., K.H. Rosenlof, D. Hurst, H.B. Selkirk, and H. Voömel, Stratospheric water vapor [in "State of the Climate in 2016"], Bulletin of the American Meteorological Society, doi:10.1175/2017BAMSStateoftheClimate.1, 2017.

Avery, M., S. Davis, K. Rosenlof, H. Ye, and A. Dessler, Large anomalies in lower stratospheric water vapor and ice during the 2015- 2016 El Niño, Nature Geoscience, doi:10.1038/NGEO2961, 2017.

Ball, W.T., J. Alsing, D.J. Mortlock, E.V. Rozanov, F. Tummon, and J.D. Haigh, Reconciling differences in stratospheric ozone composites, Atmospheric Chemistry and Physics, doi:10.5194/acp-17-12269-2017, 2017.

Davis, S.M., M.I. Hegglin, M. Fujiwara, R. Dragani, Y. Harada, C. Kobayashi, C. Long, G.L. Manney, E. Nash, G.L. Potter, S. Tegtmeier, T. Wang, K. Wargan, and J.S. Wright, Assessment of upper tropospheric and stratospheric water vapour and ozone in reanalyses as part of S-RIP, Atmospheric Chemistry and Physics, doi:10.5194/acp-17-12743-2017, 2017.

Garfinkel, C.I., Might stratospheric variability lead to improved predictability of ENSO events?, Environmental Research Letters, doi:10.1088/1748-9326/aa60a4, 2017.

Ming, A., A.C. Maycock, P. Hitchcock, and P. Haynes, The radiative role of ozone and water vapour in the annual temperature cycle in the tropical tropopause layer, Atmospheric Chemistry and Physics, doi:10.5194/acp-17-5677-2017, 2017.

Revell, L.E., A. Stenke, B.P. Luo, S. Kremser, E. Rozanov, T. Sukhodolov, and T. Peter, Impacts of Mt Pinatubo volcanic aerosol on the tropical stratosphere in chemistry-climate model simulations using CCMI and CMIP6 stratospheric aerosol data, Atmospheric Chemistry and Physics, doi:10.5194/acp-17-13139-2017, 2017.

Steinbrecht, W., L. Froidevaux, R. Fuller, R. Wang, J. Anderson, C. Roth, A. Bourassa, D. Degenstein, R. Damadeo, J. Zawodny, S. Frith, R. McPeters, P. Bhartia, J. Wild, C. Long, S. Davis, K. Rosenlof, V. Sofieva, K. Walker, N. Rahpoe, A. Rozanov, M. Weber, A. Laeng, T.v. Clarmann, G. Stiller, N. Kramarova, S. Godin-Beekmann, T. Leblanc, R. Querel, D. Swart, I. Boyd, K. Hocke, N. Kämpfer, E.M. Barras, L. Moreira, G. Nedoluha, C. Vigouroux, T. Blumenstock, M. Schneider, O. Garcìa, N. Jones, E. Mahieu, D. Smale, M. Kotkamp, J. Robinson, I. Petropavlovskikh, N. Harris, B. Hassler, D. Hubert, and F. Tummon, An update on ozone profile trends for the period 2000 to 2016, Atmospheric Chemistry and Physics, doi:10.5194/acp-17-10675-2017, 2017.

Tian, W.S., Y.P. Li, F. Xie, J.K. Zhang, M.P. Chipperfield, W.H. Feng, Y.Y. Hu, S. Zhao, X. Zhou, Y. Yang, and X. Ma, The relationship between lower-stratospheric ozone at southern high latitudes and sea surface temperature in the East Asian marginal seas in austral spring, Atmospheric Chemistry and Physics, doi:10.5194/acp-17-6705-2017, 2017.

Weber, M., W. Steinbrecht, C. Arosio, R. van der A, S. M. Frith, J. Anderson, M. Coldewey-Egbers, S. Davis, D. Degenstein, V. E. Fioletov, L. Froidevaux, D. Hubert, C. S. Long, D. Loyola, A. Rozanov, C. Roth, V. Sofieva, K. Tourpali, R. Wang, and J. D. Wild, Stratospheric ozone [in "State of the Climate in 2016"], Bulletin of the American Meteorological Society, doi:10.1175/2017BAMSStateoftheClimate.1, 2017.

Xie, F., J.P. Li, J.K. Zhang, W.S. Tian, Y.Y. Hu, S. Zhao, C. Sun, R.Q. Ding, J. Feng, and Y. Yang, Variations in North Pacific sea surface temperature caused by Arctic stratospheric ozone anomalies, Environmental Research Letters, doi:10.1088/1748-9326/aa9005, 2017.

Xie, F., J.K. Zhang, W.J. Sang, Y. Li, Y.L. Qi, C. Sun, Y. Li, and J.C. Shu, Delayed effect of Arctic stratospheric ozone on tropical rainfall, Atmospheric Science Letters, doi:10.1002/asl.783, 2017.

2016

Ball, W.T., A. Kuchar, E.V. Rozanov, J. Staehelin, F. Tummon, A.K. Smith, T. Sukhodolov, A. Stenke, L. Revell, A. Coulon, W. Schmutz, and T. Peter, An upper-branch Brewer-Dobson circulation index for attribution of stratospheric variability and improved ozone and temperature trend analysis, Atmospheric Chemistry and Physics, doi:10.5194/acp-16-15485-2016, 2016.

Davis, S.M., K.H. Rosenlof, D.F. Hurst, and H.B. Selkirk, Stratospheric water vapor [in "State of the Climate in 2015"], Bulletin of the American Meteorological Society, doi:10.1175/2016BAMSStateoftheClimate.1, 2016.

Revell, L.E., A. Stenke, E. Rozanov, W. Ball, S. Lossow, and T. Peter, The role of methane in projections of 21st century stratospheric water vapour, Atmospheric Chemistry and Physics, doi:10.5194/acp-16-13067-2016, 2016.

Xie, F., J.P. Li, W.S. Tian, Q. Fu, F.F. Jin, Y.Y. Hu, J.K. Zhang, W.K. Wang, C. Sun, J. Feng, Y. Yang, and R.Q. Ding, A connection from Arctic stratospheric ozone to El Nino-Southern oscillation, Environmental Research Letters, doi:10.1088/1748-9326/11/12/124026, 2016.

Last modified: Thursday, 15-Apr-2021 11:51:38 MDT