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Dive into the research topics where Jeanne M. Reeves is active.

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Featured researches published by Jeanne M. Reeves.


Journal of Geophysical Research | 2004

New particle formation observed in the tropical//subtropical cirrus clouds

Shan-Hu Lee; J. C. Wilson; D. Baumgardner; R. L. Herman; Elliot M. Weinstock; Bernard G. Lafleur; Gregory L. Kok; Bruce E. Anderson; P. Lawson; B. Baker; Anthony W. Strawa; J. V. Pittman; Jeanne M. Reeves; T. P. Bui

[1] Previous studies show that new particle formation takes place in the outflows of marine stratus and cumulus clouds. Here we show measurements of high concentrations of ultrafine particles, diameters (Dp) from 4 to 9 nm (N4–9), in interstitial cloud aerosol. These ultrafine particles indicate that in situ new particle formation occurs interstitially in cirrus clouds. Measurements were made at altitudes from 7 to 16 km over Florida with instruments on the WB-57F aircraft during Cirrus Regional Study of Tropical Anvils and Cirrus Layers-Florida Area Cirrus Experiments (CRYSTAL-FACE) in July 2002. Sizeresolved ice crystal particle concentrations and water vapor concentrations were measured to help identify the presence of cirrus clouds. About 72% of the in-cloud samples showed new particle formation events with the average N4–9 of 3.0 10 3 cm 3 , whereas about 56% of the out-of-cloud samples had events with the lower N4–9of 1.3 10 3 cm 3 . The periods during which high N4–9 appeared were often associated with times of increasing ice water content (IWC) and high relative humidity with respect to ice (RHI); however, the measured N4–9was not quantitatively correlated to IWC. The magnitude and frequency of new particle formation events seen in cirrus clouds were also higher than those previously observed in the tropical/subtropical upper troposphere in the absence of clouds. These results suggest that cirrus clouds may provide favorable conditions for particle formation, such as low temperatures, high RHI, high OH production (due to high water vapor), cloud electricity, and atmospheric convection. At present, however, particle formation mechanisms in clouds are unidentified. INDEX TERMS: 0305 Atmospheric Composition and Structure: Aerosols and particles (0345, 4801); 0320 Atmospheric Composition and Structure: Cloud physics and chemistry; 0335 Atmospheric Composition and Structure: Ion chemistry of the atmosphere (2419, 2427); 0365 Atmospheric Composition and Structure: Troposphere—composition and chemistry; 0368 Atmospheric Composition and Structure: Troposphere—constituent transport and chemistry;


Journal of Geophysical Research | 2008

Coatings and their enhancement of black carbon light absorption in the tropical atmosphere

J. P. Schwarz; J. R. Spackman; D. W. Fahey; R. S. Gao; Ulrike Lohmann; P. Stier; L. A. Watts; D. S. Thomson; D. A. Lack; Leonhard Pfister; M. J. Mahoney; D. Baumgardner; J. C. Wilson; Jeanne M. Reeves


Journal of Volcanology and Geothermal Research | 2005

In-situ aircraft observations of the 2000 Mt. Hekla volcanic cloud : Composition and chemical evolution in the Arctic lower stratosphere

D.E. Hunton; Albert A. Viggiano; T.M. Miller; J.O. Ballenthin; Jeanne M. Reeves; J. C. Wilson; Shan-Hu Lee; Bruce E. Anderson; William H. Brune; H. Harder; J.B. Simpas; N. Oskarsson


Atmospheric Chemistry and Physics | 2011

In situ observations of new particle formation in the tropical upper troposphere: the role of clouds and the nucleation mechanism

R. Weigel; S. Borrmann; Jan Kazil; Andreas Minikin; Andreas Stohl; J. C. Wilson; Jeanne M. Reeves; Daniel Kunkel; M. de Reus; W. Frey; E. R. Lovejoy; C. M. Volk; S. Viciani; F. D'Amato; C. Schiller; T. Peter; Hans Schlager; F. Cairo; Kathy S. Law; G. Shur; Gennady Belyaev; Joachim Curtius


Atmospheric Environment | 2004

Convective transport of reactive constituents to the tropical and mid-latitude tropopause region: I. Observations

B. A. Ridley; Elliot Atlas; H. Selkirk; L. Pfister; D. D. Montzka; James G. Walega; Stephen George Donnelly; V. Stroud; Erik Charles Richard; K. K. Kelly; A. Tuck; T. L. Thompson; Jeanne M. Reeves; D. Baumgardner; W.T. Rawlins; M. Mahoney; R. L. Herman; R. Friedl; F. L. Moore; E. Ray; James W. Elkins


Atmospheric Chemistry and Physics | 2008

Steady-state aerosol distributions in the extra-tropical, lower stratosphere and the processes that maintain them

J. C. Wilson; Shan-Hu Lee; Jeanne M. Reeves; C. A. Brock; Haflidi H. Jonsson; Bernard G. Lafleur; M. Loewenstein; J. R. Podolske; E. Atlas; K. Boering; G. C. Toon; D. W. Fahey; T. P. Bui; Glenn S. Diskin; F. L. Moore


Journal of Geophysical Research | 2003

Size-resolved particle emission indices in the stratospheric plume of an Athena II rocket

Otmar Schmid; Jeanne M. Reeves; J. C. Wilson; Christine Wiedinmyer; C. A. Brock; D. W. Toohey; Linnea M. Avallone; Amelia M. Gates; M. N. Ross


Journal of Geophysical Research | 2008

Comparison of aerosol extinction coefficients, surface area density, and volume density from SAGE II and in situ aircraft measurements

Jeanne M. Reeves; J. C. Wilson; C. A. Brock; T. P. Bui


Journal of Geophysical Research | 2003

Quantifying uptake of HNO3 and H2O by alumina particles in Athena‐2 rocket plume

M. Y. Danilin; P. J. Popp; R. L. Herman; Malcolm K. W. Ko; M. N. Ross; Charles E. Kolb; D. W. Fahey; Linnea M. Avallone; D. W. Toohey; B. A. Ridley; Otmar Schmid; J. C. Wilson; Darrel Baumgardner; Randall R. Friedl; T. L. Thompson; Jeanne M. Reeves


Archive | 2008

Sub-micron Aerosol Size Distributions in the Upper Troposphere and Lower Stratosphere

Jean Wilson; Jeanne M. Reeves; P. Bui; Frank R. Moore

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D. W. Fahey

National Oceanic and Atmospheric Administration

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D. Baumgardner

National Autonomous University of Mexico

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R. L. Herman

California Institute of Technology

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D. W. Toohey

University of Colorado Boulder

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Gregory L. Kok

National Center for Atmospheric Research

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Linnea M. Avallone

University of Colorado Boulder

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