COP: a data library of optical properties of hexagonal ice crystals.
Explore this paper's citation graph
Summary
The data library of optical properties of hexagonal ice crystals for radiative modeling, Cirrus Optical Properties (COP), includes phase functions, asymmetry parameters, extinction cross sections, and single scattering albedos.
- Type
- article
- Published
- 1994-11-20
- Cited by
- 91
- References
- 9
- OpenAlex
- https://openalex.org/W2013008350
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:32468070
Keywords
Cirrus, Ice crystals, Fortran, Radiative transfer, Optics
References
- Ice crystal terminal velocities.
- A parameterization of the particle size spectrum of ice clouds in terms of the ambient temperature and the ice water content
- Optical constants of ice from the ultraviolet to the microwave.
- The Dimension of Ice Crystals in Natural Clouds
- Solar Radiative Transfer in Cirrus Clouds. Part I: Single-Scattering and Optical Properties of Hexagonal Ice Crystals
- Scattering of solar radiation by hexagonal ice crystals.
- Fraunhofer Diffraction by Ice Crystals Suspended in the Atmosphere
- Remote Sensing of Planar Ice Crystal Fall Attitudes
- Lidar observations of the horizontal orientation of ice crystals in cirrus clouds: LIDAR OBSERVATIONS OF THE HORIZONTAL ORIENTATION OF ICE CRYSTALS IN CIRRUS CLOUDS
Cited by
- Etude des propriétés optiques et radiatives des cirrus par télédetection active : apport des observations polarisées
- Remote Sensing of Multilayer Cirrus Cloud Properties during INCA Using ATSR-2 Data: Case Study on 23 March 2000
- Caractérisation in situ des propriétés microphysiques et optiques des nuages : Contribution à l'amélioration des modèles de transfert radiatif et des méthodes d'inversion satellitales
- Efficient, graphics hardware-accelerated, atmospheric rendering and multi-field weather visualization
- Effects of spherical inclusions on scattering properties of small ice cloud particles
- Lidar Studies of Tropospheric Aerosols and Clouds
- Impact of aerosol and thin cirrus on retrieving and validating XCO2 from GOSAT shortwave infrared measurements
- Calculations of LIDAR Returns for Ice Crystal Particles of Cirrus Clouds
- Beam splitting algorithm for the problem of light scattering by atmospheric ice crystals. part 1. theoretical foundations of the algorithm
- CH4 retrievals from space‐based solar backscatter measurements: Performance evaluation against simulated aerosol and cirrus loaded scenes
- Scattering matrices of imperfect hexagonal ice crystals
- Scattering matrices for large ice crystal particles.
- Potential uses of along-track scanning radiometer data for cloud parameter retrieval
- Extinction measurements and single scattering albedo in the 0.5 to 1.05 μm range for a laboratory cloud of hexagonal ice crystals
- Backscattering by hexagonal ice crystals
- Mueller matrices for randomly oriented ice crystal particles in the geometric optics approximation
- Scattering matrix of nonspherical ice particles determined by the geometric optics approximation method
- Light scattering by ice crystals of cirrus clouds: Jones matrix
- Backscattering peak of hexagonal ice columns and plates.
- Light backscattering by hexagonal ice crystals
Related papers
- Remote sensing of three-dimensional cirrus clouds from satellites: application to continuous-wave laser atmospheric transmission and backscattering.
- Satellite remote sensing of the optical depth and mean crystal size of thin cirrus and contrails
- Evolution of a Florida Cirrus Anvil
- Bulk microphysical properties of semi-transparent cirrus from AIRS: a six year global climatology and statistical analysis in synergy with geometrical profiling data from CloudSat-CALIPSO
- Effective ice particle densities for cold anvil cirrus
- Sensitivity of cirrus bidirectional reflectance to vertical inhomogeneity of ice crystal habits and size distributions for two Moderate‐Resolution Imaging Spectroradiometer (MODIS) bands
- a New way to Measure Cirrus Cloud Ice Water Content by Using Ice Raman Scatter with Raman LIDAR
- [The estimation of cirrus cloud particulate shape using combined simulation and a three-wavelength lidar measurement].
- An observational and theoretical study of the radiative properties of cirrus: Some results from ICE'89
- From the single-scattering properties of ice crystals to climate prediction: A way forward