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  1. Accadia, C., P. Schlüssel, P. L. Phillips, and J. J. W. Wilson (2013), The EUMETSAT Polar System-Second Generation (EPS-SG) micro-wave and sub-millimetre wave imaging missions, In: SPIE Remote Sensing, pp. 88890H–88890H, doi:10.1117/12.2028676.
  2. Doyle, S., P. Mauskopf, J. Naylon, A. Porch, and C. Duncombe (2008), Lumped Element Kinetic Inductance DetectorsJ. Low Temp. Phys., 151(1–2), 530–536, doi:10.1007/s10909-007-9685-2.
  3. Evans, K. F., J. R. Wang, P. E. Racette, G. Heymsfield, and L. Li (2005), Ice cloud Retrievals and Analysis with Data from the Compact Scanning Submillimeter Imaging Radiometer and the Cloud Radar System during CRYSTAL-FACEJ. Appl. Meteorol., 44, 839–859.
  4. Evans, K. F. and G. L. Stephens (1995), Microwave Radiative Transfer through Clouds Composed of Realistically Shaped Ice Crystals. Part I: Single Scattering PropertiesJ. Atmos. Sci., 52(11), 2041–2057, doi:10.1175/1520-0469(1995)052<2041:MRTTCC>2.0.CO;2.
  5. Evans, K. F. and G. L. Stephens (1995), Microwave Radiative Transfer through Clouds Composed of Realistically Shaped Ice Crystals. Part II: Remote Sensing of Ice CloudsJ. Atmos. Sci., 52, 2058–2072, doi:10.1175/1520-0469(1995)052<2058:MRTTCC>2.0.CO;2.
  6. Evans, K. F., S. J. Walter, and W. R. McGrath (1996), Submillimeter-Wave Radiometric Sensing of Cirrus Clouds Properties: The JPL Prototype Cloud Ice Radiometer, University of Colorado.
  7. Evans, K. F., S. J. Walter, A. J. Heymsfield, and M. N. Deeter (1998), Modeling of Submillimeter Passive Remote Sensing of Cirrus CloudsJ. Appl. Meteorol., 37, 184–205.
  8. Evans, K. F., A. H., I. G. Nolt, and B. T. Marshall (1999), The Prospect for Remote Sensing of Cirrus Clouds with a Submillimeter-Wave SpectrometerJ. Appl. Meteorol., 38, 514–525.
  9. Gasiewski, A. J. (1992), Numerical Sensitivity Analysis of Passive EHF and SMMW Channels to Tropospheric Water Vapor, Clouds, and PrecipitationIEEE T. Geosci. Remote, 30(5), 859–870, doi:10.1109/36.175320.
  10. Jiang, J. H. and D. L. Wu (2004), Ice and water permittivities for millimeter and sub-millimeter remote sensing applicationsAtm. Sci. Lett., 5, 146–151, doi:10.1002/asl.77.
  11. Podobedov, V.B., D.F. Plusquellic, K.E. Siegrist, G.T. Fraser, Q. Ma, and R.H. Tipping (2008), New measurements of the water vapor continuum in the region from 0.3 to 2.7 THzJ. Quant. Spectrosc. Radiat. Transfer, 109(3), 458–467, doi:10.1016/j.jqsrt.2007.07.005.
  12. Podobedov, V.B., D.F. Plusquellic, K.M. Siegrist, G.T. Fraser, Q. Ma, and R.H. Tipping (2008), Continuum and magnetic dipole absorption of the water vapor-oxygen mixtures from 0.3 to 3.6 THzJ. Molec. Spectro., 251(1–2), 203–209, doi:10.1016/j.jms.2008.02.021.
  13. Pritchard, E. W., C. Lee, B. Moyna, M. Philipp, J. E. Charlton, and V. Kangas (2012), The Cloud and Precipitation Airborne Radiometer — Populating the International Sub-Millimetre Airborne Radiometer, In: Geoscience and Remote Sensing Symposium (IGARSS), 2012 IEEE International, doi:10.1109/IGARSS.2012.6351301.
  14. Zhang, C., K.-S. Lee, X.-C. Zhang, X. Wei, and Y.R. Shen (2001), Optical constants of ice Ih crystal at terahertz frequenciesAppl. Phys. Lett., 79(4), 491–493, doi:10.1063/1.1386401.