Ph.D., Atmospheric Physics, University of Bremen, Germany (2007)
Professional Experience
Jet Propulsion Laboratory (2013 – present)
Scientist, AIRS Atmospheric Science Group
University of California, Los Angeles/Jet Propulsion Laboratory (2009-2013)
Research Assistant for Regional Earth System Science and Engineering (JIFRESSE) of UCLA/JPL (2010-2013)
Post-Doc within Joint Institute for Regional Earth System Science and Engineering (JIFRESSE) of UCLA/JPL (2009-2010)
University of Bremen (2004-2008)
Research Assistant within the SeaKLIM-project
Meteorological Institute Munich, LMU Munich (2003-2004)
Research Assistant
Selected Publications
Schreier, M. M., Kahn, B. H., Sušelj, K., Karlsson, J., Ou, S. C., Yue, Q., and Nasiri, S. L. (2014): Atmospheric parameters in a subtropical cloud regime transition derived by AIRS and MODIS: observed statistical variability compared to ERA-Interim, Atmos. Chem. Phys., 14, 3573-3587, doi:10.5194/acp-14-3573-2014.
Kahn, B. H., Irion, F. W., Dang, V. T., Manning, E. M., Nasiri, S. L., Naud, C. M., Blaisdell, J. M., Schreier, M. M., Yue, Q., Bowman, K. W., Fetzer, E. J., Hulley, G. C., Liou, K. N., Lubin, D., Ou, S. C., Susskind, J., Takano, Y., Tian, B., and Worden, J. R. (2014): The Atmospheric Infrared Sounder version 6 cloud products, Atmos. Chem. Phys., 14, 399-426, doi:10.5194/acp-14-399-2014.
Yue, Q., B. H. Kahn, H. Xiao, M. M. Schreier, E. J. Fetzer, J. Teixeira, and K. Sušelj (2013): Transitions of cloud-topped marine boundary layers characterized by AIRS, MODIS, and a large eddy simulation model, J. Geophys. Res. Atmos., 118, 8598–8611, doi:10.1002/jgrd.50676.
Ou, S.S.C., B.H. Kahn, K.N. Liou, Y. Takano, M.M. Schreier, and Q. Yue (2013), Retrieval of Cirrus Cloud Properties from the Atmospheric Infrared Sounder: The k-Coefficent Approach combined with SARTA plus Delta-Four Stream Approximation (2012), IEEE Trans. Geosci. Remote Sens, 51, 1010-1024.
Kahn, B. H., S. L. Nasiri, M. M. Schreier, and B. A. Baum (2011), Impacts of subpixel cloud heterogeneity on infrared thermodynamic phase assessment, J. Geophys. Res., 116, D20201, doi:10.1029/2011JD015774.
Nasiri ,S.L., V.T. Dang, B.H. Kahn, E.J. Fetzer, E.M. Manning, M.M. Schreier, and R.A. Frey (2011): Comparing MODIS and AIRS infrared-based cloud retrievals, J. Appl. Meteorol. Climatol., 50, 1057-1072.
Schreier, M.M., B. H. Kahn, A. Eldering, D. A. Elliot, E. Fishbein, F. W. Irion, and T. S. Pagano (2010): Radiance comparisons of MODIS and AIRS using spatial response information, J. Atmos. Ocean. Tech., 27, 1331-1342, doi: 10.1175/2010jtecha1424.1.
Schreier M., L. Joxe, V. Eyring, H. Bovensmann, and J.P. Burrows (2010): Ship track characteristics derived from geostationary satellite observations on the west coast of southern Africa, Atmos. Res., 95, 1, 32–39, DOI: 10.1016/j.atmosres.2009.08.005.
Kokhanovsky A. A., and M. Schreier (2009): The determination of snow specific surface area, albedo, and effective grain size using AATSR spaceborne measurements, Int. J. Remote Sens., 30, 919–933.
Kokhanovsky A.A., M. Schreier, and W. von Hoyningen-Huene (2008): The comparison of spectral top-of-atmosphere reflectances measured by AATSR, MERIS, and SCIAMACHY onboard ENVISAT, Geosci. Remote Sens. Lett., 5, 53–56.
Kokhanovsky A. A., T. Nauss, M. Schreier, W. von Hoyningen-Huene, and J.P. Burrows (2007): The intercomparison of cloud parameters derived using multiple satellite instruments, IEEE Trans. Geosci. Remote Sens., 45, 195–200.
Schreier M., H. Mannstein, V. Eyring, and H. Bovensmann (2007): Global ship track distribution and radiative forcing from 1-year of AATSR-data, Geophys.Res. Lett., 34, L17814, doi:10.1029/2007GL030664.
Schreier, M. A. A. Kokhanovky, V. Eyring, L. Bugiaro, H. Mannstein, B. Mayer, H. Bovensmann, and J. P. Burrows (2006): Impact of ship emissions on microphysical, optical and radiative properties of marine stratus: A case study, Atmos. Chem. Phys., 6, 4925–4942.
Seefeldner, M., A. Oppenrieder, D. Rabus, J. Reuder, M. Schreier, P. Hoeppe, and P. Koepke (2004): A two-axis tracking system with datalogger, J. Atmos. Ocean. Tech., 21, 975–979.