Guo, H., Flynn, C. M., Prather, M. J., Strode, S. A., Steenrod, S. D., Emmons, L., Lacey, F., Lamarque, J.-F., Fiore, A. M., Correa, G., Murray, L. T., Wolfe, G. M., St.Clair, J. M., Kim, M. J., Crounse, J. D., Diskin, G. S., DiGangi, J. P., Daube, B. C., Commane, R., … Wofsy, S. C. (2022). ATom: Data Stream for Modeling the Reactivity of ATom Air Parcels, 2016-2018 (Version 1). ORNL Distributed Active Archive Center. https://doi.org/10.3334/ORNLDAAC/1877 Date Accessed: 2026-08-26
@article{guo_flynn_prather_strode_steenrod_emmons_lacey_lamarque_fiore_correa_et al._2022,
title={ATom: Data Stream for Modeling the Reactivity of ATom Air Parcels, 2016-2018},
url={https://www.earthdata.nasa.gov/data/catalog/ornl-cloud-atom-fullmodel-datastream-1877-1},
DOI={10.3334/ORNLDAAC/1877},
abstractNote={This dataset provides Modeling Data Stream (MDS) and Reactivity Data Stream (RDS) products for each of the four ATom campaigns conducted from 2016 to 2018. MDS files contain the atmospheric constituents needed to model the RDS of the air parcels along ATom flight paths. The MDS is a continuous data stream (every 10 seconds) of the atmospheric content of these key chemical species derived from the in-situ measurements collected along ATom flight paths (as reported in the comprehensive related dataset ATom: Merged Atmospheric Chemistry, Trace Gases, and Aerosols). Values for chemical species measured by multiple instruments were selected from the instrument with better coverage and/or greater precision. Missing values were filled using interpolation for short gaps. For long gaps owing to instrument failure, values were estimated using multiple linear regressions from comparable parallel flights from other ATom campaigns. All species were flagged for instrument source and values were flagged for gap-filling status. In combination, MDS and RDS provide, in essence, a photochemical climatology for each air parcel along ATom flight paths containing the reactive species that control the loss of methane and the production and loss of ozone.},
publisher={ORNL Distributed Active Archive Center},
author={Guo, H. and Flynn, C.M. and Prather, M.J. and Strode, S.A. and Steenrod, S.D. and Emmons, L. and Lacey, F. and Lamarque, J.-F. and Fiore, A.M. and Correa, G. and Murray, L.T. and Wolfe, G.M. and St.Clair, J.M. and Kim, M.J. and Crounse, J.D. and Diskin, G.S. and DiGangi, J.P. and Daube, B.C. and Commane, R. and McKain, K. and Peischl, J. and Ryerson, T.B. and Thompson, C.R. and Hanisco, T.F. and Blake, D.R. and Blake, N. and Apel, E.C. and Hornbrook, R.S. and Elkins, J.W. and Hintsa, E.J. and Moore, F.L. and Wofsy, S.C.},
year={2022},
language={en},
}
Guo, H., Flynn, C. M., Prather, M. J., Strode, S. A., Steenrod, S. D., Emmons, L., Lacey, F., Lamarque, J.-F., Fiore, A. M., Correa, G., Murray, L. T., Wolfe, G. M., St.Clair, J. M., Kim, M. J., Crounse, J. D., Diskin, G. S., DiGangi, J. P., Daube, B. C., Commane, R., … Wofsy, S. C. (2022). ATom: Data Stream for Modeling the Reactivity of ATom Air Parcels, 2016-2018 (Version 1). ORNL Distributed Active Archive Center. https://doi.org/10.3334/ORNLDAAC/1877 Date Accessed: 2026-08-26
Guo, H., et al. “ATom: Data Stream for Modeling the Reactivity of ATom Air Parcels, 2016-2018.” With ORNL DAAC, Version 1, ORNL Distributed Active Archive Center, 1 Jan. 2022, https://doi.org/10.3334/ORNLDAAC/1877. Date Accessed: 2026-08-26