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Publications about 'Particles'
Books and proceedings
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Akira Ishimaru.
Electromagnetic Wave Propagation Radiation and Scattering.
John Wiley and Sons,
Hoboken, New Jersey,
2017.
Keyword(s): Scattering Theory,
Wave Propagation,
Radiation,
Scattering,
advanced analytical theory,
dielectric slab,
electromagnetic scattering,
electromagnetic theory,
electromagnetic wave propagation,
excitation,
Maxwell's equations,
microwave waveguides,
Wentzel-Kramers-Brillouim solution,
boundary conditions,
electromagnetic waves,
energy relations,
fundamental field equations,
Hertz vectors,
Poynting's theorem,
reciprocity theorem,
scalar acoustic waves,
time-harmonic wave,
Time-Reversal Imaging,
Scattering by Turbulence,
Particles,
Diffuse Medium,
Rough Surfaces,
Coherence in Multiple Scattering,
Diagram Method,
Solitons,
Optical Fibers,
Porous Media,
Permittivity,
Fluid Permeability.
[Abstract]
[bibtex-entry]
Articles in journal or book chapters
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Silvan Leinss,
Giuseppe Parrella,
and Irena Hajnsek.
Snow height determination by polarimetric phase differences in X-band SAR data.
IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing,
7(9):3794-3810,
Sept 2014.
Keyword(s): hydrological techniques,
remote sensing by radar,
snow,
synthetic aperture radar,
AD 2012 01,
AD 2012 12 to 2013 04,
CPD temporal evolution,
Finland,
HH polarization,
Sodankylae city,
TanDEM-X,
TanDEM-X acquisitions,
TerraSAR-X acquisitions,
VV polarization,
X-band SAR acquisitions,
X-band SAR data,
aligned elliptical particles,
computer tomography observations,
copolar phase difference,
fresh snow depth,
polarimetric phase difference,
snow height determination,
snow microstructure,
subsequent recrystallization process,
temperature-gradient-driven recrystallization process,
weather station data,
Backscatter,
Scattering,
Snow,
Soil,
Soil measurements,
Synthetic aperture radar,
Temperature measurement,
Birefringence,
TanDEM-X,
TerraSAR-X,
VV-HH phase difference,
copolar phase difference,
dry snow,
fresh snow,
polarimetry,
snow anisotropy,
snow microstructure,
synthetic aperture radar.
[Abstract]
[bibtex-entry]
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F. Prieur and Roy E. Hansen.
Theoretical Improvements When Using the Second Harmonic Signal in Acoustic Doppler Current Profilers.
IEEE Journal of Oceanic Engineering,
38(2):275-284,
April 2013.
Keyword(s): Synthetic Aperture Sonar,
SAS,
Doppler shift,
acoustic pulses,
acoustic signal processing,
acoustic wave velocity,
autonomous underwater vehicles,
harmonic generation,
signal generators,
underwater sound,
Doppler frequency shift,
Doppler log transmission,
acoustic Doppler current profilers,
floating particles,
frequency 153.6 kHz,
geometrical properties,
geometry,
harmonic signal generation,
mainlobe-to-sidelobe ratio,
perturbations,
power 250 W,
pulse transmission,
sea bottom,
second harmonic signal,
size 400 m,
velocity estimation error,
velocity logs,
vessel relative,
water currents,
Acoustic beams,
Doppler shift,
Estimation,
Harmonic analysis,
Transducers,
Vectors,
Current profiler,
Doppler,
harmonic,
nonlinearity.
[Abstract]
[bibtex-entry]
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Christian Matzler.
Relation between grain-size and correlation length of snow.
Journal of Glaciology,
48(162):461-466,
February 2002.
[Abstract]
[bibtex-entry]
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K. Sarabandi and Y.-C. Lin.
Simulation of interferometric SAR response for characterizing the scattering phase center statistics of forest canopies.
IEEE Trans. Geosci. Remote Sens.,
38(1):115-125,
January 2000.
Keyword(s): InSAR,
Monte Carlo simulation,
SAR,
backscatter,
coherent scattering model,
equivalent scatterer,
forest,
forest canopy,
forestry,
fractal,
geophysical measurement technique,
interferometric SAR,
physical parameters,
radar remote sensing,
radar theory,
scatterer collection,
scattering phase center statistics,
simulation,
synthetic aperture radar,
vegetation mapping,
Monte Carlo methods,
backscatter,
forestry,
fractals,
geophysical techniques,
radar cross-sections,
radar theory,
remote sensing by radar,
synthetic aperture radar,
vegetation mapping;.
[Abstract]
[bibtex-entry]
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S.R. Cloude,
J. Fortuny,
J.M. Lopez-Sanchez,
and A.J. Sieber.
Wide-band polarimetric radar inversion studies for vegetation layers.
IEEE Transactions on Geoscience and Remote Sensing,
37(5):2430-2441,
September 1999.
Keyword(s): backscatter,
forestry,
geophysical techniques,
image classification,
radar cross-sections,
radar polarimetry,
remote sensing by radar,
synthetic aperture radar,
vegetation mappingbackscatter,
canopy,
complex volume scattering,
entropy-alpha target decomposition scheme,
ficus tree,
fig,
fir tree,
forest,
geophysical measurement technique,
image classification scheme,
inversion algorithm,
parametric inversion,
polarimetric radar inversion,
radar scattering,
radar theory,
random particle cloud model,
small anisotropic particles,
two-parameter model,
vegetation layer,
vegetation mapping,
wide band method.
[Abstract]
[bibtex-entry]
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Christian Matzler.
Microwave permittivity of dry snow.
IEEE Transactions on Geoscience and Remote Sensing,
34(2):573-581,
1996.
Keyword(s): UHF measurement,
hydrological equipment,
permittivity,
snow,
-10 to 0 degC,
1 GHz,
Austrian Alps,
Swiss Alps,
average axial ratio,
coaxial sensor,
density,
destructive metamorphism,
dry snow,
ice grains,
ice volume fraction,
liquid-like surface layer,
microwave permittivity,
oblate spheroids,
physical mixing theory,
prolate spheroids,
relative dielectric constant,
relative permittivity,
resometer,
resonator,
sintering,
Coaxial components,
Dielectric constant,
Dielectric measurements,
Frequency,
Ice,
Instruments,
Measurement standards,
Permittivity measurement,
Snow,
Testing.
[Abstract]
[bibtex-entry]
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Copyright and all rights therein are retained by authors or by other copyright holders. All persons copying this information are expected to
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This collection of SAR literature is far from being complete. It is rather a collection of papers which I store in my literature data base. Hence, the list of publications under PUBLICATIONS OF AUTHOR'S NAME
should NOT be mistaken for a complete bibliography of that author.
Last modified: Fri Feb 24 14:24:21 2023
Author: Othmar Frey, Earth Observation and Remote Sensing, Institute of Environmental Engineering, Swiss Federal Institute of Technology - ETH Zurich .
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