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ATom
Home
> ATom
Synonyms:
Atmospheric Tomography Mission
Associated content:
ATom
Sub-categories:
ATOM 2
,
ATom 3
,
ATOM 4
,
ATom Data Sets
,
ATom I
Global Scale Inversions from MOPITT CO and MODIS AOD
Gaubert, B.
,
et al.
(2023),
Global Scale Inversions from MOPITT CO and MODIS AOD
,
Remote Sens., 15
, 4813, doi:10.3390/rs15194813.
Read more
about Global Scale Inversions from MOPITT CO and MODIS AOD
Neutral Tropical African CO2 Exchange Estimated From Aircraft and Satellite Observations
Gaubert, B.
,
et al.
(2024),
Neutral Tropical African CO2 Exchange Estimated From Aircraft and Satellite Observations
,
Global Biogeochem. Cycles, 37
, e2023GB007804, doi:10.1029/2023GB007804.
Read more
about Neutral Tropical African CO2 Exchange Estimated From Aircraft and Satellite Observations
Metals from spacecraft reentry in stratospheric aerosol particles
Murphy, D.
,
et al.
(2023),
Metals from spacecraft reentry in stratospheric aerosol particles
,
Proc. Natl. Acad. Sci.
, doi:10.1073/pnas.2313374120.
Read more
about Metals from spacecraft reentry in stratospheric aerosol particles
Deconstruction of tropospheric chemical reactivity using aircraft measurements: the Atmospheric Tomography Mission (ATom) data
Prather, M.
, H. Guo, and X. Zhu (2023),
Deconstruction of tropospheric chemical reactivity using aircraft measurements: the Atmospheric Tomography Mission (ATom) data
,
Earth Syst. Sci. Data, 15
, 1-51, doi:10.5194/essd-15-1-2023.
Read more
about Deconstruction of tropospheric chemical reactivity using aircraft measurements: the Atmospheric Tomography Mission (ATom) data
Pyrocumulonimbus affect average stratospheric aerosol composition
Katich, J.
,
et al.
(2023),
Pyrocumulonimbus affect average stratospheric aerosol composition
,
Science, 379
, 815-820, doi:10.1126/science.add3101.
Read more
about Pyrocumulonimbus affect average stratospheric aerosol composition
Nitrogen oxides in the free troposphere: implications for tropospheric oxidants and the interpretation of satellite NO2 measurements
Shah, V.,
et al.
(2023),
Nitrogen oxides in the free troposphere: implications for tropospheric oxidants and the interpretation of satellite NO2 measurements
,
Atmos. Chem. Phys.
, doi:10.5194/acp-23-1227-2023.
Read more
about Nitrogen oxides in the free troposphere: implications for tropospheric oxidants and the interpretation of satellite NO2 measurements
Simulation of organics in the atmosphere: evaluation of EMACv2.54 with the Mainz Organic Mechanism (MOM) coupled to the ORACLE (v1.0) submodel
Pozzer, A.,
et al.
(2022),
Simulation of organics in the atmosphere: evaluation of EMACv2.54 with the Mainz Organic Mechanism (MOM) coupled to the ORACLE (v1.0) submodel
,
Geosci. Model. Dev., 15
, 2673-2710, doi:10.5194/gmd-15-2673-2022.
Read more
about Simulation of organics in the atmosphere: evaluation of EMACv2.54 with the Mainz Organic Mechanism (MOM) coupled to the ORACLE (v1.0) submodel
Using atmospheric trace gas vertical profiles to evaluate model fluxes: a case study of Arctic-CAP observations and GEOS simulations for the ABoVE domain
Sweeney, C.
,
et al.
(2023),
Using atmospheric trace gas vertical profiles to evaluate model fluxes: a case study of Arctic-CAP observations and GEOS simulations for the ABoVE domain
,
Atmos. Chem. Phys., 22
, 6347-6364, doi:10.5194/acp-22-6347-2022.
Read more
about Using atmospheric trace gas vertical profiles to evaluate model fluxes: a case study of Arctic-CAP observations and GEOS simulations for the ABoVE domain
Secondary Organic Aerosol Formation Regulates Cloud Condensation Nuclei in the Global Remote Troposphere
Liu, M., and H. Matsui (2022),
Secondary Organic Aerosol Formation Regulates Cloud Condensation Nuclei in the Global Remote Troposphere
,
Geophys. Res. Lett., 49
, doi:10.1029/2022GL100543.
Read more
about Secondary Organic Aerosol Formation Regulates Cloud Condensation Nuclei in the Global Remote Troposphere
Introducing new lightning schemes into the CHASER (MIROC) chemistry–climate model
He, Y., H. M. S. Hoque, and K. Sudo (2022),
Introducing new lightning schemes into the CHASER (MIROC) chemistry–climate model
,
Geosci. Model. Dev., 15
, 5627-5650, doi:10.5194/gmd-15-5627-2022.
Read more
about Introducing new lightning schemes into the CHASER (MIROC) chemistry–climate model
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