Articles | Volume 9, issue 9
https://doi.org/10.5194/amt-9-4569-2016
https://doi.org/10.5194/amt-9-4569-2016
Research article
 | 
16 Sep 2016
Research article |  | 16 Sep 2016

Comparison of the aerosol optical properties and size distribution retrieved by sun photometer with in situ measurements at midlatitude

Aurélien Chauvigné, Karine Sellegri, Maxime Hervo, Nadège Montoux, Patrick Freville, and Philippe Goloub

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Cited articles

AERONET: Aerosol Robotic Network, http://aeronet.gsfc.nasa.gov/, last access: September 2016.
Anderson, T. and Ogren, J.: Determining Aerosol Radiative Properties Using the TSI 3563 Integrating Nephelometer, Aerosol Sci. Tech., 29, 57–69, 1998.
Anderson, T. L., Covert, D. S., Marshall, S. F., Laucks, M. L., Charlson, R. J., Waggoner, A. P., Ogren, J. A., Caldow, R., Holm, R. L., Quant, F. R., Sem, G. J., Wiedensohler, A., Ahlquist, N. A. and Bates, T. S.: Performance Characteristics of a High-Sensitivity, Three-Wavelength, Total Scatter/Backscatter Nephelometer, J. Atmos. Ocean. Tech., 13, 967–986, https://doi.org/10.1175/1520-0426(1996)013<0967:PCOAHS>2.0.CO;2, 1996.
Andrews, E., Sheridan, P. J., and Ogren, J. A.: Seasonal differences in the vertical profiles of aerosol optical properties over rural Oklahoma, Atmos. Chem. Phys., 11, 10661–10676, https://doi.org/10.5194/acp-11-10661-2011, 2011.