Aerosol microphysical properties of the remote troposphere. Preliminary results from the first ATom airborne research experiment.
Agnieszka Kupc1,2, Christina Williamson3,4, Charles A Brock5, Karl D Froyd3,6, Daniel M Murphy7, Mathews Richardson8,9, Pedro Campuzano-Jost10, Roisin Commane11, Bruce C Daube12, Maximilian Dollner2, Jose L Jimenez13,14, Dr. Benjamin Nault, Ph.D.13,15, Jeff Peischl1,14, Thomas B Ryerson16, Jason Clay Schroder13,14, Chelsea R Thompson1,14, Bernadett Weinzierl2 and Steven C Wofsy11, (1)NOAA ESRL, Boulder, CO, United States, (2)University of Vienna, Faculty of Physics, Aerosol and Environmental Physics Group, Vienna, Austria, (3)University of Colorado, CIRES, Boulder, United States, (4)Finnish Meteorological Institute, Climate Research Programme, Helsinki, Finland, (5)NOAA Chemical Sciences Laboratory, Boulder, United States, (6)NOAA Earth System Research Laboratory, Chemical Sciences Division, Boulder, CO, United States, (7)NOAA Earth System Research Laboratory, Chemical Sciences Division, Boulder, United States, (8)University of Colorado at Boulder, Boulder, CO, United States, (9)NOAA/CIRES, Boulder, United States, (10)University of Colorado Boulder, Department of Chemistry and Cooperative Institute for Research in Environmental Sciences, Boulder, United States, (11)Harvard University, Cambridge, MA, United States, (12)Harvard University, John A. Paulson School of Engineering and Applied Sciences, Cambridge, United States, (13)University of Colorado at Boulder, Department of Chemistry, Boulder, CO, United States, (14)University of Colorado at Boulder, Cooperative Institute for Research in Environmental Sciences, Boulder, CO, United States, (15)University of Colorado at Boulder, Department of Chemistry & Biochemistry, Boulder, CO, United States, (16)NOAA ESRL, Chemical Sciences Laboratory, Boulder, CO, United States