Publications for CloudSat

Publication Citation
Henderson, D.S., T. L’Ecuyer, G. Stephens, P. Partain, and M. Sekiguchi (2013), A Multisensor Perspective on the Radiative Impacts of Clouds and Aerosols, J. Appl. Meteor. Climat., 52, 853-871, doi:10.1175/JAMC-D-12-025.1.
Henkena, C.C., R. Lindstrota, F. Filipitscha, A. Waltherb, R. Preuskera, and J. Fischera (2016), Inhomogeneous Cloud Profiles, FAME-C: Retrieval of Cloud Top Pressure with Vertically, 11, doi:10.1063/1.4804794.
Heymsfield, A.J., G. Thompson, H. Morrison, A. Bansemer, R. Rasmussen, P. Minnis, Z. Wang, and D. Zhang (2011), Formation and Spread of Aircraft-Induced Holes in Clouds, Science, 77-81.
Heymsfield, A.J., G.-J. Van Zadelhoff, D.P. Donovan, F. Fabry, R.J. Hogan, and A.J. Illingworth (2007), Refinements to Ice Particle Mass Dimensional and Terminal Velocity Relationships for Ice Clouds. Part II: Evaluation and Parameterizations of Ensemble Ice Particle Sedimentation Velocities, J. Atmos. Sci., 64, 1068-1088, doi:10.1175/JAS3900.1.
Heymsfield, A.J., A. Protat, R.T. Austin, D. Bouniol, R.J. Hogan, J. Delano, H. Okamoto, K. Sato, G.-J. Van Zadelhoff, D.P. Donovan, and Z. Wang (2008), Testing IWC Retrieval Methods Using Radar and Ancillary Measurements with In Situ Data, J. Appl. Meteor. Climat., 47, 135-163, doi:10.1175/2007JAMC1606.1.
Heymsfield, A.J., A. Bansemer, S. Matrosov, and L. Tian (2008), The 94-GHz radar dim band: Relevance to ice cloud properties and CloudSat, Geophys. Res. Lett., 35, L03802, doi:10.1029/2007GL031361.
Heymsfield, A.J., G. Thompson, H. Morrison, A. Bansemer, R.M. Rasmussen, P. Minnis, Z. Wang, and D. Zhang (2011), Formation and Spread of Aircraft-Induced Holes in Clouds, Science, 333, 77-81, doi:10.1126/science.1202851.
Heymsfield, A., D. Winker, M. Avery, M. Vaughan, G. Diskin, M. Deng, V. Mitev, and R. Matthey (2014), Relationships between Ice Water Content and Volume Extinction Coefficient from In Situ Observations for Temperatures from 08 to 2868C: Implications for Spaceborne Lidar Retrievals*, J. Appl. Meteor. Climat., 53, 479-505, doi:10.1175/JAMC-D-13-087.1.
Hiley, M.J., M.S. Kulie, and R. Bennartz (2011), Uncertainty Analysis for CloudSat Snowfall Retrievals, J. Appl. Meteor. Climat., 50, 399-418, doi:10.1175/2010JAMC2505.1.
Hill, P.G., R.J. Hogan, B.J. Mannersa, and J.C. Petcha (2012), Parametrizing the horizontal inhomogeneity of ice water content using CloudSat data products, Q. J. R. Meteorol. Soc., 138, 1784-1793.
Hinkelman, L.M. (2019), The Global Radiative Energy Budget in MERRA and MERRA-2: Evaluation with Respect to CERES EBAF Data, J. Climate, 32, 1973-1994, doi:10.1175/JCLI-D-18-0445.1.
Hogan, R.J., D.P. Donovan, C. Tinel, M.E. Brooks, D. Bouniol, A.J. Illingworth, and J.P.V.P. Baptista (2006), Independent Evaluation of the Ability of Spaceborne Radar and Lidar to Retrieve the Microphysical and Radiative Properties of Ice Clouds, J. Atmos. Oceanic Technol., 23, 211-229.
Hogan, R.J., L. Tian, P.R.A. Brown, C.D. Westbrook, A.J. Heymsfield, and J.D. Eastment (2012), Radar Scattering from Ice Aggregates Using the Horizontally Aligned Oblate Spheroid Approximation, J. Appl. Meteor. Climat., 51, 655-671, doi:10.1175/JAMC-D-11-074.1.
Holl, G., S.A. Buehler, B. Rydberg, and C. Jiménez (2010), Collocating satellite-based radar and radiometer measurements – methodology and usage examples, Atmos. Meas. Tech., 3, 693-708, doi:10.5194/amt-3-693-2010.
Holl, G., S. Eliasson, J. Mendrok, and S.A. Buehler (2014), SPARE-ICE: Synergistic ice water path from passive operational sensors, J. Geophys. Res., 119, 1504-1523, doi:10.1002/2013JD020759.
Honeyager, R., G. Liu, and H. Nowell (2016), Voronoi diagram-based spheroid model for microwave scattering of complex snow aggregates, J. Quant. Spectrosc. Radiat. Transfer, 170, 28-44, doi:10.1016/j.jqsrt.2015.10.025.
Hong, Y., and G. Liu (2015), The Characteristics of Ice Cloud Properties Derived from CloudSat and CALIPSO Measurements, J. Climate, 28, 3880-3901, doi:10.1175/JCLI-D-14-00666.1.
Huang, G.-J., V.N. Bringi, R. Cifelli, D. Hudak, and W.A. Petersen (2010), A Methodology to Derive Radar Reflectivity–Liquid Equivalent Snow Rate Relations Using C-Band Radar and a 2D Video Disdrometer, J. Atmos. Oceanic Technol., 27, 637-651, doi:10.1175/2009JTECHA1284.1.
Huang, J., J. Guo, F. Wang, Z. Liu, M.-J. Jeong, H. Yu, and Z. Zhang (2015), CALIPSO inferred most probable heights of global dust and smoke layers, J. Geophys. Res., 120, doi:10.1002/2014JD022898.
Huang, Y., S.T. Siems, M.J. Manton, A. Protat, and J. Delanoë (2012), A study on the low-altitude clouds over the Southern Ocean using the DARDAR-MASK, J. Geophys. Res., 117, D18204, doi:10.1029/2012JD017800.