In past calculations of convective velocities from Super Dual Auroral Radar Network (SuperDARN) HF radar observations, the refractive index in the scattering region has not been taken into account, and therefore the inferred ionospheric velocities may be underestimated. In light of the significant contribution by SuperDARN to ionospheric and magnetospheric research, it is important to refine the velocity determination. The refractive index in the ionosphere at SuperDARN observation F region altitudes has typical values between 0.8 and close to unity. In the scattering region, where conditions are more extreme, the index of refraction may be much lower. A simple application of Snell's law in spherical coordinates (Bouguer's law) suggests tha...
Cross-track ion drifts measured by the DMSP satellites are compared with line-of-sight SuperDARN HF...
The Super Dual Aural Radar Network (SuperDARN) forms a multinational collaboration consisting of ove...
Elevation angles of backscattered signals are calculated at the Super Dual Auroral Radar Network (Su...
[1] Gillies et al. (2009) proposed the use of interferometric measurements of the angle of arrival a...
Ionospheric E x B plasma drift velocities derived from the Super Dual Auroral Radar Network (SuperDA...
The high frequency radars in the Super Dual Auroral Radar Network (SuperDARN) estimate the elevation...
In 2011, the Canadian enhanced Polar Outflow Probe (ePOP) satellite will be launched. The ePOP sate...
The Doppler velocity and spectral width are two important parameters derived from coherent scatter ...
Ground-based radar systems are the best way to continuously monitor medium-to-large-scale features o...
Accurate geolocation of ionospheric backscatter measured by the Super Dual Auroral Radar Network (Su...
The Super Dual Auroral Radar Network (SuperDARN) network of HF coherent backscatter radars form a un...
Plasma flows in the high latitude ionosphere reflect complex physical processes occurring when the S...
Accurately mapping the location of ionospheric backscatter targets (density irregularities) identifi...
The Super Dual Auroral Radar Network (SuperDARN) network of HF coherent backscatter radars form a u...
This thesis has two focuses. The major focus is an investigation of the nature of high-velocity ~2 ...
Cross-track ion drifts measured by the DMSP satellites are compared with line-of-sight SuperDARN HF...
The Super Dual Aural Radar Network (SuperDARN) forms a multinational collaboration consisting of ove...
Elevation angles of backscattered signals are calculated at the Super Dual Auroral Radar Network (Su...
[1] Gillies et al. (2009) proposed the use of interferometric measurements of the angle of arrival a...
Ionospheric E x B plasma drift velocities derived from the Super Dual Auroral Radar Network (SuperDA...
The high frequency radars in the Super Dual Auroral Radar Network (SuperDARN) estimate the elevation...
In 2011, the Canadian enhanced Polar Outflow Probe (ePOP) satellite will be launched. The ePOP sate...
The Doppler velocity and spectral width are two important parameters derived from coherent scatter ...
Ground-based radar systems are the best way to continuously monitor medium-to-large-scale features o...
Accurate geolocation of ionospheric backscatter measured by the Super Dual Auroral Radar Network (Su...
The Super Dual Auroral Radar Network (SuperDARN) network of HF coherent backscatter radars form a un...
Plasma flows in the high latitude ionosphere reflect complex physical processes occurring when the S...
Accurately mapping the location of ionospheric backscatter targets (density irregularities) identifi...
The Super Dual Auroral Radar Network (SuperDARN) network of HF coherent backscatter radars form a u...
This thesis has two focuses. The major focus is an investigation of the nature of high-velocity ~2 ...
Cross-track ion drifts measured by the DMSP satellites are compared with line-of-sight SuperDARN HF...
The Super Dual Aural Radar Network (SuperDARN) forms a multinational collaboration consisting of ove...
Elevation angles of backscattered signals are calculated at the Super Dual Auroral Radar Network (Su...