World's Best Scientists 2026 revealed!

D-Index & Metrics

Environmental Sciences

D-Index
70
Citations
15185
World Ranking
1709
National Ranking
720

Overview

What is she best known for?

The fields of study she is best known for:

  • Meteorology
  • Aerosol
  • Atmospheric sciences

Her scientific interests lie mostly in Atmospheric sciences, Meteorology, Aerosol, Air pollution and Milagro. Teresa Campos works in the field of Atmospheric sciences, namely Troposphere. Teresa Campos usually deals with Meteorology and limits it to topics linked to Tropics and Tropical cyclogenesis and Cloud systems.

Her Aerosol research includes themes of Environmental chemistry, Emission inventory and Plateau. The study incorporates disciplines such as Biomass and Greenhouse gas in addition to Air quality index. Teresa Campos has researched Ozone in several fields, including Pollutant and Mixing ratio.

Her most cited work include:

  • The Indian Ocean Experiment: Widespread Air Pollution from South and Southeast Asia (618 citations)
  • Dynamics and chemistry of marine stratocumulus - DYCOMS II (297 citations)
  • Increasing springtime ozone mixing ratios in the free troposphere over western North America (294 citations)

What are the main themes of her work throughout her whole career to date?

The scientist’s investigation covers issues in Atmospheric sciences, Troposphere, Meteorology, Aerosol and Climatology. The various areas that Teresa Campos examines in her Atmospheric sciences study include Air quality index, Pollution, Ozone and Outflow. Her Troposphere study combines topics from a wide range of disciplines, such as Middle latitudes, Convection, Stratosphere and Water vapor.

Her work on Thunderstorm and Air mass as part of general Meteorology study is frequently connected to Dispersion, therefore bridging the gap between diverse disciplines of science and establishing a new relationship between them. Her research in Aerosol intersects with topics in Environmental chemistry, Total organic carbon, Air pollution and Atmosphere. Her Climatology research is multidisciplinary, relying on both Cloud systems and Altitude.

She most often published in these fields:

  • Atmospheric sciences (55.56%)
  • Troposphere (32.22%)
  • Meteorology (26.11%)

What were the highlights of her more recent work (between 2015-2021)?

  • Atmospheric sciences (55.56%)
  • Environmental chemistry (16.11%)
  • Aerosol (26.11%)

In recent papers she was focusing on the following fields of study:

Teresa Campos focuses on Atmospheric sciences, Environmental chemistry, Aerosol, Troposphere and Smoke. Her Atmospheric sciences research incorporates elements of Thunderstorm, Convection, Ozone and Outflow. Her Environmental chemistry research is multidisciplinary, incorporating elements of Chemical transport model, Nitrous acid and Pollution.

Teresa Campos combines subjects such as Air pollution, Plume and Trace gas with her study of Aerosol. Troposphere is the subject of her research, which falls under Climatology. In general Climatology study, her work on Stratosphere often relates to the realm of Advection, thereby connecting several areas of interest.

Between 2015 and 2021, her most popular works were:

  • Rapid cycling of reactive nitrogen in the marine boundary layer (62 citations)
  • Chemical feedbacks weaken the wintertime response of particulate sulfate and nitrate to emissions reductions over the eastern United States (54 citations)
  • Origin of oxidized mercury in the summertime free troposphere over the southeastern US (47 citations)

In her most recent research, the most cited papers focused on:

  • Meteorology
  • Climate change
  • Greenhouse gas

Teresa Campos mainly investigates Environmental chemistry, Atmospheric sciences, Aerosol, Meteorology and NOx. Her studies deal with areas such as Biomass burning and Chemical transport model as well as Environmental chemistry. Her Atmospheric sciences research includes elements of Storm and Outflow.

Her Aerosol research is multidisciplinary, incorporating perspectives in Cloud systems, Smoke, Particle composition and Atmospheric chemistry. Her High ozone study, which is part of a larger body of work in Meteorology, is frequently linked to Box model, Research council and Administration, bridging the gap between disciplines. Her Troposphere research is under the purview of Climatology.

Best Publications

  • The Indian Ocean Experiment: Widespread Air Pollution from South and Southeast Asia

    Jos Lelieveld;Paul J. Crutzen;V. Ramanathan;M. O. Andreae

  • Emissions from biomass burning in the Yucatan

    R. J. Yokelson;J. D. Crounse;P. F. DeCarlo;P. F. DeCarlo;T. Karl

  • Calibration of the Total Carbon Column Observing Network using aircraft profile data

    Debra Wunch;Geoffrey C. Toon;Paul O. Wennberg;Steven C. Wofsy

  • Dynamics and chemistry of marine stratocumulus - DYCOMS II

    Bjorn Stevens;Donald H. Lenschow;Gabor Vali;Hermann Gerber

  • Increasing springtime ozone mixing ratios in the free troposphere over western North America

    O. R. Cooper;O. R. Cooper;D. D. Parrish;A. Stohl;M. Trainer

  • Fast airborne aerosol size and chemistry measurements above Mexico City and Central Mexico during the MILAGRO campaign

    P. F. DeCarlo;P. F. DeCarlo;E. J. Dunlea;J. R. Kimmel;A. C. Aiken

  • Volatile chemical product emissions enhance ozone and modulate urban chemistry.

    Matthew M Coggon;Matthew M Coggon;Georgios I Gkatzelis;Georgios I Gkatzelis;Brian C McDonald;Jessica B Gilman

  • Investigation of the sources and processing of organic aerosol over the Central Mexican Plateau from aircraft measurements during MILAGRO

    P. F. DeCarlo;P. F. DeCarlo;P. F. DeCarlo;I. M. Ulbrich;I. M. Ulbrich;J. Crounse;B. de Foy

  • Quantification of organic aerosol and brown carbon evolution in fresh wildfire plumes

    Brett B. Palm;Qiaoyun Peng;Carley D. Fredrickson;Ben H. Lee

  • Rapid cycling of reactive nitrogen in the marine boundary layer

    Chunxiang Ye;Xianliang Zhou;Xianliang Zhou;Dennis Pu;Jochen Stutz

  • Emissions from forest fires near Mexico City

    Robert J. Yokelson;S. P. Urbanski;E. L. Atlas;D. W. Toohey

  • The Deep Convective Clouds and Chemistry (DC3) Field Campaign

    Mary C. Barth;Christopher A. Cantrell;William H. Brune;Steven A. Rutledge

  • Flight-based chemical characterization of biomass burning aerosols within two prescribed burn smoke plumes

    K.A. Pratt;K.A. Pratt;K.A. Pratt;Shane Murphy;Shane Murphy;R. Subramanian;P.J. Demott

  • Chemical feedbacks weaken the wintertime response of particulate sulfate and nitrate to emissions reductions over the eastern United States

    Viral Shah;Lyatt Jaeglé;Joel A. Thornton;Felipe D. Lopez-Hilfiker

  • On entrainment rates in nocturnal marine stratocumulus

    Bjorn Stevens;Bjorn Stevens;Donald H. Lenschow;Ian Faloona;C.-H. Moeng

  • Emission and evolution of submicron organic aerosol in smoke from wildfires in the western United States

    Lauren A. Garofalo;Matson A. Pothier;Ezra J. T. Levin;Teresa Campos

  • Source signatures of carbon monoxide and organic functional groups in Asian Pacific Regional Aerosol Characterization Experiment (ACE-Asia) submicron aerosol types

    S. F. Maria;L. M. Russell;B. J. Turpin;R. J. Porcja

  • Sources and chemistry of NOx in the upper troposphere over the United States

    Lyatt Jaegle;Daniel J. Jacob;Yuhua Wang;Andrew J. Weinheimer

  • The Pre-Depression Investigation of Cloud-Systems in the Tropics (PREDICT) Experiment: Scientific Basis, New Analysis Tools, and Some First Results

    Michael T. Montgomery;Christopher Davis;Timothy Dunkerton;Zhuo Wang

  • Heterogeneous N2O5 Uptake During Winter: Aircraft Measurements During the 2015 WINTER Campaign and Critical Evaluation of Current Parameterizations

    Erin E. McDuffie;Erin E. McDuffie;Erin E. McDuffie;Dorothy L. Fibiger;Dorothy L. Fibiger;William P. Dubé;William P. Dubé;Felipe Lopez‐Hilfiker

  • Deep convection as a source of new particles in the midlatitude upper troposphere

    Cynthia H. Twohy;Charles F. Clement;Bruce W. Gandrud;Andrew J. Weinheimer

  • Supplement to Dynamics and Chemistry of Marine Stratocumulus—DYCOMS-II

    Bjorn Stevens;Donald H. Lenschow;Gabor Vali;Hermann Gerber

Frequent Co-Authors

Andrew J. Weinheimer
Andrew J. Weinheimer National Center for Atmospheric Research
Eric C. Apel
Eric C. Apel National Center for Atmospheric Research
Jose L. Jimenez
Jose L. Jimenez University of Colorado Boulder
Frank Flocke
Frank Flocke National Center for Atmospheric Research
Steven S. Brown
Steven S. Brown National Oceanic and Atmospheric Administration
Lyatt Jaeglé
Lyatt Jaeglé University of Washington
Nicola J. Blake
Nicola J. Blake University of California, Irvine
Pedro Campuzano-Jost
Pedro Campuzano-Jost University of Colorado Boulder
Donald R. Blake
Donald R. Blake University of California, Irvine
Paul O. Wennberg
Paul O. Wennberg California Institute of Technology

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