B. E. Anderson
Papers
8
Total Citations
326
H-Index
7
About
B. E. Anderson is a leading atmospheric scientist whose research centers on aerosol optical properties, remote sensing, and the complex interactions between aerosols and clouds. Their most significant contributions involve validating and improving the Aerosol Robotic Network (AERONET) retrieval algorithms through rigorous field campaigns and laboratory experiments. Anderson played a key role in the DRAGON and DISCOVER-AQ field experiments, where they led critical intercomparisons between ground-based AERONET measurements and in situ aircraft profiles—work that has been cited over 170 times collectively. Their 2018 overview of mesoscale aerosol processes from DRAGON networks (100 citations) remains a foundational reference in the field. Anderson also pioneered the STEAR laboratory experiment (40 citations), a novel method for statistically evaluating aerosol retrieval algorithms under controlled conditions. More recently, they have advanced global aerosol modeling through parameterizations of organic and inorganic aerosol size distributions. Beyond atmospheric science, Anderson’s work extends to biomedical engineering, with a high-throughput manufacturing method for 3D fiber scaffolds for regenerative medicine (22 citations), demonstrating remarkable interdisciplinary breadth. Their research continues to shape how we measure and model aerosols from ground to space.
Research Focus
Key Achievements
Top Papers
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- 5High-Throughput Manufacture of 3D Fiber Scaffolds for Regenerative Medicine22 citations · 2020
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