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Publications for ATom
Publication Citation
Prather, M.J.
,
C.M. Flynn
,
X. Zhu
,
S.D. Steenrod
,
S.A. Strode
,
A. Fiore
, G. Correa,
L.T. Murray
, and
J. Lamarque
(2018),
How well can global chemistry models calculate the reactivity of short-lived greenhouse gases in the remote troposphere, knowing the chemical composition
,
Atmos. Meas. Tech.
,
11
, 2653-2668, doi:10.5194/amt-11-2653-2018.
Prather, M.J.
, 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.
Ranjithkumar, A.,
H. Gordon
,
C.J. Williamson
,
A.W. Rollins
, K. Pringle,
A. Straus
, N.L. Abraham,
C.A. Brock
, and
K. Carslaw
(2021),
Constraints on global aerosol number concentration, SO2 and condensation sink in UKESM1 using ATom measurements
,
Atmos. Chem. Phys.
,
21
, 4979-5014, doi:10.5194/acp-21-4979-2021.
Rickly, P.
,
L. Xu
,
J.D. Crounse
,
P. Wennberg
, and
A.W. Rollins
(2021),
Improvements to a laser-induced fluorescence instrument for measuring SO2 – impact on accuracy and precision
,
Atmos. Meas. Tech.
,
14
, 2429-2439, doi:10.5194/amt-14-2429-2021.
Roberts, J.M.
,
S. Wang
,
P.R. Veres
,
J.A. Neuman
,
M.A. Robinson
,
I.E.V. Bourgeois
,
J.W. Peischl
,
T.B. Ryerson
,
C. Thompson
,
H.M. Allen
,
J.D. Crounse
,
P. Wennberg
,
S.R. Hall
,
K.L. Ullmann
,
S. Meinardi
,
I.J. Simpson
, and
D.R. Blake
(2024),
Observations of cyanogen bromide (BrCN) in the global troposphere and their relation to polar surface O3 destruction
,
Atmos. Chem. Phys.
, doi:10.5194/acp-24-3421-2024.
Roozitalab, B.
,
L.K. Emmons
,
R.S. Hornbrook
,
D.E. Kinnison
, R.P. Fernandez,
Q. Li
,
A. Saiz-Lopez
,
R. Hossaini
, C.A. Cuevas,
A.J. Hills
,
S.A. Montzka
,
D.R. Blake
,
W.H. Brune
,
P.R. Veres
, and
E.C. Apel
(2024),
Measurements and Modeling of the Interhemispheric Differences of Atmospheric Chlorinated Very Short-Lived Substances
,
J. Geophys. Res.
, doi:10.1029/2023JD039518.
Rowlinson, M.J.,
L. Carpenter
,
M.J. Evans
,
J.D. Lee
, S.T. Andersen,
T. Sherwen
, A.B. Callaghan, R. Sommariva, W. Bloss, S. Hou, L.R. Crilley,
K.A. Pfeilsticker
, B. Weyland,
T.B. Ryerson
,
P.R. Veres
,
P. Campuzano Jost
,
H. Guo
,
B.A. Nault
,
J.L. Jimenez-Palacios
, and K.W. Fomba (2025),
A nitrate photolysis source of tropospheric HONO is incompatible with current understanding of atmospheric chemistry
,
Atmos. Chem. Phys.
, doi:10.5194/acp-25-16945-2025.
Salzmann, M., S. Ferrachat, C. Tully, S. Münch,
D. Watson-Parris
, D. Neubauer, C.S.-L. Drian, S. Rast, B. Heinold, T. Crueger, R. Brokopf, J. Mülmenstädt,
J. Quaas
, H. Wan, K. Zhang, U. Lohmann,
P. Stier
, and I. Tegen (2022),
The Global Atmosphere-aerosol Model ICON-A-HAM2.3– Initial Model Evaluation and Effects of Radiation Balance Tuning on Aerosol Optical Thickness
,
J. Adv. Modeling Earth Syst.
,
22(9)
, 6347-6364, doi:10.1029/2021MS002699.
Schill, G.P.
,
K.D. Froyd
,
H. Bian
,
A. Straus
,
C.J. Williamson
,
C.A. Brock
,
E.A. Ray
,
R.S. Hornbrook
,
A.J. Hills
,
E.C. Apel
,
M. Chin
,
P.R. Colarco
, and
D. Murphy
(2020),
Widespread biomass burning smoke throughout the remote troposphere
,
Nat. Geosci.
,
13
, 422-427, doi:10.1038/s41561-020-0586-1.
Schill, G.P.
,
K.D. Froyd
,
D. Murphy
,
C.J. Williamson
,
C.A. Brock
,
T. Sherwen
,
M.J. Evans
,
E.A. Ray
,
E.C. Apel
,
R.S. Hornbrook
,
A.J. Hills
,
J.W. Peischl
,
T.B. Ryerson
,
C. Thompson
,
I.E.V. Bourgeois
,
D.R. Blake
,
J.P. DiGangi
, and
G.S. Diskin
(2025),
Widespread trace bromine and iodine in remote tropospheric non-sea-salt aerosols
,
Atmos. Chem. Phys.
, doi:10.5194/acp-25-45-2025.
Schuck, T.J., J. Degen,
E.J. Hintsa
, P. Hoor, M. Jesswein, T. Keber, D. Kunkel,
F.L. Moore
, F. Obersteiner,
M. Rigby
, T. Wagenhäuser,
L. Western
, A. Zahn, and
A. Engel
(2024),
The interhemispheric gradient of SF6 in the upper troposphere
,
Atmos. Chem. Phys.
, doi:10.5194/acp-24-689-2024.
Schueneman, M.K.
,
B.A. Nault
,
P. Campuzano Jost
,
D.S. Jo
,
D.A. Day
,
J.C. Schroder
,
B.B. Palm
,
A. Hodzic
,
J.E. Dibb
, and
J.L. Jimenez-Palacios
(2021),
Aerosol pH Indicator and Organosulfate Detectability from Aerosol Mass Spectrometry Measurements
,
Atmos. Meas. Tech.
, doi:10.5194/amt-2020-339.
Sekiya, T.
,
Y. Kanaya
, K. Sudo, F. Taketani, Y. Iwamoto, M.N. Aita, A. Yamamoto, and K. Kawamoto (2020),
Global Bromine- and Iodine-Mediated Tropospheric Ozone Loss Estimated Using the CHASER Chemical Transport Model
,
Sola
,
16
, 220−227, doi:10.2151/sola.2020-037.
Shah, V.,
D.J. Jacob
, R. Dang,
L. Lamsal
,
S.A. Strode
,
S.D. Steenrod
,
F. Boersma
, S.D. Eastham, T.M. Fritz,
C. Thompson
,
J.W. Peischl
,
I.E.V. Bourgeois
,
I.B. Pollack
,
B.A. Nault
,
R.C. Cohen
,
P. Campuzano Jost
,
J.L. Jimenez-Palacios
, S.T. Andersen,
L. Carpenter
,
T. Sherwen
, and
M.J. Evans
(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.
Spanu, A.,
M. Dollner
, J. Gasteiger,
T.V. Bui
, and
B.B. Weinzierl
(2020),
Flow-induced errors in airborne in situ measurements of aerosols and clouds
,
Atmos. Meas. Tech.
,
13
, 1963-1987, doi:10.5194/amt-13-1963-2020.
St. Clair, J.M.
,
A.K. Swanson
, S.A. Bailey, and
T.F. Hanisco
(2019),
CAFE: a new, improved nonresonant laser-induced fluorescence instrument for airborne in situ measurement of formaldehyde
,
Atmos. Meas. Tech.
,
12
, 4581-4590, doi:10.5194/amt-12-4581-2019.
Stephens, B.B.
,
E.J. Morgan
,
J.D. Bent
,
R.F. Keeling
,
A.S. Watt
,
S.R. Shertz
, and
B.C. Daube
(2021),
Airborne measurements of oxygen concentration from the surface to the lower stratosphere and pole to pole
,
Atmos. Meas. Tech.
,
14
, 2543-2574, doi:10.5194/amt-14-2543-2021.
Stephens, B.B.
, Y. Jin,
C. Sweeney
,
K. McKain
,
B. Gaubert
,
D. Baker
,
S. Basu
, M. Bertolacci, F. Chevallier,
R. Commane
, S. Crowell, F. Deng,
M. Johnson
,
R.F. Keeling
,
J. Liu
, Z. Liu, S. Maity,
E.J. Morgan
,
P.K. Patra
, S. Philip,
S. Wofsy
, and A. Zammit-Mangion (2026),
Improved latitudinal carbon budgets from global airborne surveys
,
Proc. Natl. Acad. Sci.
,
123
, e2523984123, doi:10.1073/pnas.2523984123.
Strode, S.A.
,
J. Liu
,
L.R. Lait
,
R. Commane
,
B.C. Daube
,
S. Wofsy
,
A. Conaty
,
P.A. Newman
, and
M.J. Prather
(2018),
Forecasting carbon monoxide on a global scale for the ATom-1 aircraft mission: insights from airborne and satellite observations and modeling
,
Atmos. Chem. Phys.
,
18
, 10955-10971, doi:10.5194/acp-18-10955-2018.
Sweeney, C.
, A. Chatterjee,
S. Wolter
,
K. McKain
, R. Bogue, S. Conley,
T.A. Newberger
,
L. Hu
,
L. Ott
,
B. Poulter
,
L. Schiferl
, B. Weir, Z. Zhang, and
C.E. Miller
(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.
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