On 5 April 2010 a coronal mass ejection produced a traveling solar wind shock front that impacted the Earth's magnetosphere, producing the largest geomagnetic storm of 2010. The storm resulted in a prolonged period of phase scintillation on Global Positioning System signals in Antarctica. The scintillation began in the deep polar cap at South Pole just over 40 min after the shock front impact was recorded by a satellite at the first Lagrangian orbit position. Scintillation activity continued there for many hours. On the second day, significant phase scintillation was observed from an auroral site (81 degrees S) during the postmidnight sector in association with a substorm. Particle data from polar-orbiting satellites provide indication of e...
Ionospheric irregularities affect the propagation of Global Navigation Satellite System (GNSS) signa...
We investigate the Global Positioning System (GPS) amplitude and phase scintillations during a sever...
Rapid fluctuation in the amplitude and phase of transionospheric radio signals caused by small scale...
During the ascending phase of solar cycle 24, a series of interplanetary coronal mass ejections (ICM...
The storm onset of the so-called “St. Patrick’s day geomagnetic storm”, on March 17th, 2015 triggere...
The global positioning system (GPS) phase scintillation caused by high-latitude ionospheric irregula...
During the ascending phase of solar cycle 24, a series of interplanetary coronal mass ejections (ICM...
The global positioning system (GPS) phase scintillation caused by highlatitude ionospheric irregular...
This work investigates physical mechanisms triggering phase scintillations on L-band signals under s...
The polar region is the gateway of the magnetospheric processes induced due to the solar events; thr...
During the ascending phase of solar cycle 24, a series of interplanetary coronal mass ejections (ICM...
Arrays of GPS Ionospheric Scintillation and TEC Monitors (GISTMs) are used in a comparative scintill...
Arrays of dual-frequency GPS receivers operating in the Arctic and Antarctic monitor scintillation a...
In this paper we study how GPS, GLONASS, and Galileo navigation signals are compromised by strong ir...
The interval of geomagnetic storms of 7–17 March 2012 was selected at the Climate and Weather of th...
Ionospheric irregularities affect the propagation of Global Navigation Satellite System (GNSS) signa...
We investigate the Global Positioning System (GPS) amplitude and phase scintillations during a sever...
Rapid fluctuation in the amplitude and phase of transionospheric radio signals caused by small scale...
During the ascending phase of solar cycle 24, a series of interplanetary coronal mass ejections (ICM...
The storm onset of the so-called “St. Patrick’s day geomagnetic storm”, on March 17th, 2015 triggere...
The global positioning system (GPS) phase scintillation caused by high-latitude ionospheric irregula...
During the ascending phase of solar cycle 24, a series of interplanetary coronal mass ejections (ICM...
The global positioning system (GPS) phase scintillation caused by highlatitude ionospheric irregular...
This work investigates physical mechanisms triggering phase scintillations on L-band signals under s...
The polar region is the gateway of the magnetospheric processes induced due to the solar events; thr...
During the ascending phase of solar cycle 24, a series of interplanetary coronal mass ejections (ICM...
Arrays of GPS Ionospheric Scintillation and TEC Monitors (GISTMs) are used in a comparative scintill...
Arrays of dual-frequency GPS receivers operating in the Arctic and Antarctic monitor scintillation a...
In this paper we study how GPS, GLONASS, and Galileo navigation signals are compromised by strong ir...
The interval of geomagnetic storms of 7–17 March 2012 was selected at the Climate and Weather of th...
Ionospheric irregularities affect the propagation of Global Navigation Satellite System (GNSS) signa...
We investigate the Global Positioning System (GPS) amplitude and phase scintillations during a sever...
Rapid fluctuation in the amplitude and phase of transionospheric radio signals caused by small scale...