This paper investigates the relative scintillation level associated with cusp dynamics (including precipitation, flow shears, etc.) with and without the formation of polar cap patches around the cusp inflow region by the EISCAT Svalbard radar (ESR) and two GPS scintillation receivers. A series of polar cap patches were observed by the ESR between 8:40 and 10:20 UT on December 3, 2011. The polar cap patches combined with the auroral dynamics were associated with a significantly higher GPS phase scintillation level (up to 0.6 rad) than those observed for the other two alternatives, i.e., cusp dynamics without polar cap patches, and polar cap patches without cusp aurora. The cusp auroral dynamics without plasma patches were indeed related to G...
AbstractWe present the results of scintillation studies based on the data obtained during the first ...
Space weather can cause serious disturbances of global navigation satellite systems (GNSS) used for ...
Arrays of GPS Ionospheric Scintillation and TEC Monitors (GISTMs) are used in a comparative scintill...
This paper investigates the relative scintillation level associated with cusp dynamics (including pr...
This paper presents research on polar cap ionosphere space weather phenomena conducted during the Eu...
The comparative research of the influence of different types of auroral particle precipitation and p...
We directly compare the relative GPS scintillation levels associated with regions of enhanced plasma...
The climatology map of the GPS phase scintillation at high latitudes identifies two regions of high ...
We present two examples from the cusp ionosphere over Svalbard, where poleward moving auroral forms ...
The climatology map of the GPS phase scintillation identifies two regions of high scintillation occu...
A unique example of a polar cap arc producing clear amplitude and phase scintillations in GPS L-band...
A Global Positioning System (GPS) network in the polar cap, along with ionosonde and SuperDARN radar...
This study surveys space weather effects on GNSS (Global Navigation Satellite System) signals in the...
The global positioning system (GPS) phase scintillation caused by high-latitude ionospheric irregula...
The global positioning system (GPS) phase scintillation caused by high-latitude ionospheric irregula...
AbstractWe present the results of scintillation studies based on the data obtained during the first ...
Space weather can cause serious disturbances of global navigation satellite systems (GNSS) used for ...
Arrays of GPS Ionospheric Scintillation and TEC Monitors (GISTMs) are used in a comparative scintill...
This paper investigates the relative scintillation level associated with cusp dynamics (including pr...
This paper presents research on polar cap ionosphere space weather phenomena conducted during the Eu...
The comparative research of the influence of different types of auroral particle precipitation and p...
We directly compare the relative GPS scintillation levels associated with regions of enhanced plasma...
The climatology map of the GPS phase scintillation at high latitudes identifies two regions of high ...
We present two examples from the cusp ionosphere over Svalbard, where poleward moving auroral forms ...
The climatology map of the GPS phase scintillation identifies two regions of high scintillation occu...
A unique example of a polar cap arc producing clear amplitude and phase scintillations in GPS L-band...
A Global Positioning System (GPS) network in the polar cap, along with ionosonde and SuperDARN radar...
This study surveys space weather effects on GNSS (Global Navigation Satellite System) signals in the...
The global positioning system (GPS) phase scintillation caused by high-latitude ionospheric irregula...
The global positioning system (GPS) phase scintillation caused by high-latitude ionospheric irregula...
AbstractWe present the results of scintillation studies based on the data obtained during the first ...
Space weather can cause serious disturbances of global navigation satellite systems (GNSS) used for ...
Arrays of GPS Ionospheric Scintillation and TEC Monitors (GISTMs) are used in a comparative scintill...