Wave propagation in a random medium with anisotropic background.
Wave propagation in anisotropic plasma in presence of electron density irregularities, noting Faraday effect
Engineering topics
Publications and source records attributed to Yeh, K. C..
Wave propagation in anisotropic plasma in presence of electron density irregularities, noting Faraday effect
Omicron I satellite measurements of total ionospheric electron content, comparing values at Houghton, Michigan, with others for different latitudes
Ionospheric electron content calculation method applied to Faraday fading signals
Scintillation observations at medium latitude geomagnetically conjugate stations
Spatial and temporal models used to study response of ionospheric electron density to change of electron temperature
Ionospheric irregularities explained by gravitational field and positive electron density gradient joint effect on ionospheric region below electron distribution peak
Ionospheric electron content at temperature latitudes during declining phase of sunspot cycle determined by observation of Faraday effect
LF incompressible waves and gradient instabilities in ionosphere
Ionospheric electron density during declining phase of sunspot cycle by Faraday effect observations
F region irregularities studied by scintillation of radio signals from earth satellites
Scintillation observations of satellite signals noting latitude, diurnal, seasonal and sunspot cycle variations
Parameter dependence of phase and log amplitude scintillation - Signal statistics of spherical wave emitted by transmitter through intervening slab of irregularities
Diffraction of random waves propagated in homogeneous anisotropic medium
Scintillation observations of satellite signals
F region irregularities studied by scintillation of signals from satellites
Morphology of ionosphere using radio signals from earth satellites
Electron density distribution deduced by the faraday rotation method