PUBLICATIONS


Atmospheric Profiling

Back to top

Feltz, W. F., H. B. Howell, R. O. Knuteson, H. M. Woolf, and H E. Revercomb, 2003: Near Continuous Profiling of Temperature, Moisture, and Atmospheric Stability using the Atmospheric Emitted Radiance Interferometer (AERI). J. Appl. Meteor., 42, 584-597.

Feltz, W. F. and J. R. Mecikalski, 2002: Monitoring High Temporal Resolution Convective Stability Indices Using the Ground-based Atmospheric Emitted Radiance Interferometer (AERI) During the 3 May 1999 Oklahoma/Kansas Tornado Outbreak. Wea. Forecasting, 17, 445-455.

Feltz, W. F., W.L. Smith, R.O. Knuteson, H.E. Revercomb, H.M. Woolf, and H.B. Howell, 1998: Meteorological applications of temperature and water vapor retrievals from the ground-based atmospheric emitted radiance interferometer (AERI). J. Appl. Meteor., 37, 857-875.

Feltz, W.F., D.D. Turner, H.B. Howell, W.L. Smith, R.O. Knuteson, H.M. Woolf, R. Mahon, and T. Halter, 2005: Retrieving temperature and moisture profiles from AERI radiance observations: AERIPROF value added product technical description. DOE ARM Technical Report, TR-066.

He, Hui, W. W. McMillan, R. O. Knuteson, and W. F. Feltz, 2001: Tropospheric carbon monoxide column density retrieval during the pre-launch MOPITT validation exercise. Atmos. Environ., 35, 509-514.

Smith, W.L, W.F. Feltz, R.O. Knuteson, H.E. Revercomb, H.B. Howell, and H.M. Woolf, 1999: The retrieval of planetary boundary layer structure using ground-based infrared spectral radiance measurements. J. Atmos. Oceanic Technol., 16, 323-333.

Smith, W. L., H. E. Revercomb, H. B. Howell, H. M. Woolf, R. O. Knuteson, R. G. Dedecker, M. J. Lynch, E. R. Westwater, R. G. Strauch, K. P. Morton, B. Stankov, M. J. Falls, J. Jordan, M. Jacobsen, W. F. Daberdt, R. McBeth, G. Albright, C. Paneitz, G. Wright, P. T. May, and M. T. Decker, 1990: GAPEX: A Ground-Based Atmospheric Profiling Experiment. Bull. Amer. Meteor. Soc., Vol. 71, No. 3.

Turner, D. D., W. F. Feltz, and R. A. Ferrare, 2000: Continuous Water Profiles from Operational Ground-based Active and Passive Remote Sensors. Bull. Amer. Meteor. Soc., 81, 1301-1317 .

Weckwerth, T. M., D. B. Parsons, S. E. Koch, J. Moore, M. A. LeMone, C. Flamant, B. Geerts, J. Wang, W. F. Feltz, 2003: An Overview of the International H2O Project (IHOP_2002) and Some Preliminary Highlights. Bull. Amer. Meteor. Soc., 85, 253-277.

Cloud Retrieval

Back to top

Collard, A. D., S.A. Ackerman, W. L. Smith, X. Ma, H. E. Revercomb, R. O. Knuteson, and S.-C. Lee, 1995: Cirrus Cloud Properties Derived from High Spectral Resolution Infrared Spectrometry during FIRE II. Part III: Ground-Based HIS Results. Journal of the Atmospheric Sciences, 52, 4264-4275.

DeSlover, DH, WL Smith, PK Piironen, and EW Eloranta, A methodology for measuring cirrus cloud visible-to-infrared spectral optical depth ratios. J. Atmos. Oceanic Technol, 16, 251-262.

Turner, D.D., submitted: Arctic mixed-phase cloud properties from AERI observations, part I: Theory and Simulations. J. Appl. Meteor.

Turner, D.D., submitted: Arctic mixed-phase cloud properties from AERI observations, part II: Results from SHEBA. J. Appl. Meteor.

Turner, D.D., S.A. Ackerman, B.A. Baum, H.E. Revercomb, and P. Yang, 2003: Cloud phase determination using ground-based AERI observations at SHEBA. Journal of Applied Meteorology, 42, 701-715, .

IR Modeling

Back to top

Tobin, D.C., and coauthors, Downwelling spectral radiance observations at the SHEBA ice station: water vapor continuum measurements from 17 to 26 um. JGR, 104, 2081-2092.

D.D. Turner, D.C. Tobin, S.A. Clough, P.D. Brown, R.G. Ellingson, M.J. Mlawer, R.O. Knuteson, H.E. Revercomb, T.R. Shippert, and W.L. Smith., submitted: The QME AERI LBLRTM: A closure experiment for downwelling high spectral resolution infrared radiance. Journal of Atmospheric Science.

Instrument

Back to top

Knuteson, R. O., F. A. Best, N. C. Ciganovich, R. G. Dedecker, T. P. Dirkx, S. Ellington, W. F. Feltz, R. K. Garcia, R. A. Herbsleb, H. B. Howell, H. E. Revercomb, W. L. Smith, J. F. Short, 2004: Atmospheric Emitted Radiance Interferometer (AERI): Part I: Instrument Design, J. Atmos. Oceanic Technol.,21, 1763-1776

Knuteson, R. O., F. A. Best, N. C. Ciganovich, R. G. Dedecker, T. P. Dirkx, S. Ellington, W. F. Feltz, R. K. Garcia, R. A. Herbsleb, H. B. Howell, H. E. Revercomb, W. L. Smith, J. F. Short, 2004: Atmospheric Emitted Radiance Interferometer (AERI): Part II: Instrument Performance, J. Atmos. Oceanic Technol.,21, 1777-1789

Knuteson, RO and coauthors, 2003: The Atmospheric Emitted Radiance Interferometer (AERI): A ground-based Fourier transform spectrometer to measure downwelling infrared radiance. J. Atmos. Oceanic Technol, to be submitted

Minnett, P. J., R. O. Knuteson, F. A. Best, B. J. Osborne, J. A. Hanafin, O. B. Brown, 2001: The Marine-Atmospheric Emitted Radiance Interferometer: A High-Accuracy, Seagoing Infrared Spectroradiometer. J. Atmos. Oceanic Technol, 18, 994-1013.

Oceanic / Land Surface Remote Sensing

Back to top

Kearns, E. J., J. A. Hanafin, R. H. Evans, P. J. Minnett, and O. B. Brown, 2000: An independent assessment of pathfinder AVHRR sea surface temperature temperature accuracy using the marine atmosphere emitted radiance interferometer (MAERI). Bull. Amer. Meteor. Soc., 81, 1525-1536.

McKeown, W., F. Bretherton, H. L. Huang, W. L. Smith, and H. E. Revercomb, 1995: Sounding the Skin of Water: Sensing Air-Water-Interface Temperature-Gradients with Interferometry. Journal of Atmospheric and Ocean Technology, 12, 1313-1327.

Smith, W. L., R. O. Knuteson, H. E. Revercomb, W. Feltz, H.B. Howell, W.P. Menzel, N. Nalli, O. Brown, J. Brown, P. Minnett, and W. McKeown January 1996: Observations of the Infrared Radiative Properties of the Ocean - Implications for the Measurement of Sea Surface Temperature via Satellite Remote Sensing. Bull. Amer. Meteor. Soc.







Last updated April 18, 2005 by SSEC Webmaster