Area of research
Atmospheric Science · Global and Planetary Change
Research interest
Research interests include Atmospheric chemistry and aerosols, Atmospheric Ozone and Climate, Atmospheric and Environmental Gas Dynamics, and Air Quality Monitoring and Forecasting.
The Network for the Detection of Atmospheric Composition Change at 35 Years: Achievements and Future Strategy
The Predictive Power of Combining Chemical and Dynamical Variables for Explaining the OH Distribution and Spatiotemporal Variability
From column to surface: connecting the performance in simulating aerosol optical properties and PM
<sub>2.5</sub>
concentrations in the NASA GEOSCCM
Evaluating the Coupled GEOS‐AOGCM for Climate Research: Response to an Abrupt Quadrupling of CO
<sub>2</sub>
Forcing
Toward Closing the Hydroxyl Radical (OH) Budget: Assessing the Feasibility and Uncertainties in Constraining primary OH Production From Space
Recent Lower Stratospheric Ozone Trends in CCMI‐2022 Models: Role of Natural Variability and Transport
Global Observations of Acetyl Peroxynitrate (PAN) in the Remote Troposphere
The Cold‐Pole Bias Severely Weakens Southern Hemisphere Springtime Stratosphere‐Troposphere Coupling
Constraining trends and spatiotemporal variability in the hydroxyl radical using machine learning and satellite observations of its drivers
Supplementary material to "From column to surface: connecting the performance in simulating aerosol optical properties and PM
<sub>2.5</sub>
concentrations in the NASA GEOSCCM"
From column to surface: connecting the performance in simulating aerosol optical properties and PM
<sub>2.5</sub>
concentrations in the NASA GEOSCCM
Investigating recent decadal trends in the Pacific westerly jet in response to various atmospheric forcings using CMIP6 model results and reanalysis data
Supplementary material to "Investigating recent decadal trends in the Pacific westerly jet in response to various atmospheric forcings using CMIP6 model results and reanalysis data"
Exploring Biases and Long-term Trends in Tropospheric OH: A Synergistic Approach with Model Simulations, Interpretable Machine Learning, and Satellite Observations
Tropospheric ozone precursors: global and regional distributions, trends, and variability
Opinion: Beyond global means – novel space-based approaches to indirectly constrain the concentrations of and trends and variations in the tropospheric hydroxyl radical (OH)
Trends and Interannual Variability of the Hydroxyl Radical in the Remote Tropics During Boreal Autumn Inferred From Satellite Proxy Data
Enhancing long-term trend simulation of the global tropospheric hydroxyl (TOH) and its drivers from 2005 to 2019: a synergistic integration of model simulations and satellite observations
Opinion: Beyond Global Means: Novel Space-Based Approaches to Indirectly Constrain the Concentrations, Trends, and Variations of Tropospheric Hydroxyl Radical (OH)
Tropospheric Ozone Precursors: Global and Regional Distributions, Trends and Variability
Supplementary material to "Tropospheric Ozone Precursors: Global and Regional Distributions, Trends and Variability"
Solar FTIR measurements of NO
<sub>
<i>x</i>
</sub>
vertical distributions – Part 2: Experiment-based scaling factors describing the daytime variation in stratospheric NO
<sub>
<i>x</i>
</sub>
Supplementary material to "Enhancing Long-Term Trend Simulation of Global Tropospheric OH and Its Drivers from 2005–2019: A Synergistic Integration of Model Simulations and Satellite Observations"
Enhancing Long-Term Trend Simulation of Global Tropospheric OH and Its Drivers from 2005–2019: A Synergistic Integration of Model Simulations and Satellite Observations
Nitrogen oxides in the free troposphere: implications for tropospheric oxidants and the interpretation of satellite NO
<sub>2</sub>
measurements
Technical note: Constraining the hydroxyl (OH) radical in the tropics with satellite observations of its drivers – first steps toward assessing the feasibility of a global observation strategy
Heterogeneity and chemical reactivity of the remote troposphere defined by aircraft measurements – corrected
Stratospheric water vapor affecting atmospheric circulation.
Supplementary material to "Solar FTIR measurements of NO
<sub>x</sub>
vertical distributions: Part II) Experiment-based scaling factors describing the diurnal increase of stratospheric NO
<sub>2</sub>
and NO"
Stratospheric water vapor affecting atmospheric circulation