In this paper we study how GPS, GLONASS, and Galileo navigation signals are compromised by strong irregularities causing severe phase scintillation (σϕ>1) in the nightside high-latitude ionosphere during a substorm on 3 November 2013. Substorm onset and a later intensification coincided with polar cap patches entering the auroral oval to become auroral blobs. Using Global Navigation Satellite Systems (GNSS) receivers and optical data, we show severe scintillation driven by intense auroral emissions in the line of sight between the receiver and the satellites. During substorm expansion, the area of scintillation followed the intense poleward edge of the auroral oval. The intense auroral emissions were colocated with polar cap patches (blobs)...
In early September 2017, several space weather events triggered disturbed conditions of the near-Ea...
In early September 2017, several space weather events triggered disturbed conditions of the near‐Ear...
During the ascending phase of solar cycle 24, a series of interplanetary coronal mass ejections (ICM...
In this paper we study how GPS, GLONASS, and Galileo navigation signals are compromised by strong ir...
The storm onset on 7 September 2017, triggered several variations in the ionospheric electron densit...
We directly compare the relative GPS scintillation levels associated with regions of enhanced plasma...
Ionospheric irregularities affect the propagation of Global Navigation Satellite System (GNSS) signa...
This study surveys space weather effects on GNSS (Global Navigation Satellite System) signals in the...
We investigate the Global Positioning System (GPS) amplitude and phase scintillations during a sever...
We present two examples from the cusp ionosphere over Svalbard, where poleward moving auroral forms ...
The global positioning system (GPS) phase scintillation caused by high-latitude ionospheric irregula...
The climatology map of the GPS phase scintillation at high latitudes identifies two regions of high ...
The global positioning system (GPS) phase scintillation caused by highlatitude ionospheric irregular...
The comparative research of the influence of different types of auroral particle precipitation and p...
The ionosphere is characterized by a highly variable degree of ionization maintained by a wide range...
In early September 2017, several space weather events triggered disturbed conditions of the near-Ea...
In early September 2017, several space weather events triggered disturbed conditions of the near‐Ear...
During the ascending phase of solar cycle 24, a series of interplanetary coronal mass ejections (ICM...
In this paper we study how GPS, GLONASS, and Galileo navigation signals are compromised by strong ir...
The storm onset on 7 September 2017, triggered several variations in the ionospheric electron densit...
We directly compare the relative GPS scintillation levels associated with regions of enhanced plasma...
Ionospheric irregularities affect the propagation of Global Navigation Satellite System (GNSS) signa...
This study surveys space weather effects on GNSS (Global Navigation Satellite System) signals in the...
We investigate the Global Positioning System (GPS) amplitude and phase scintillations during a sever...
We present two examples from the cusp ionosphere over Svalbard, where poleward moving auroral forms ...
The global positioning system (GPS) phase scintillation caused by high-latitude ionospheric irregula...
The climatology map of the GPS phase scintillation at high latitudes identifies two regions of high ...
The global positioning system (GPS) phase scintillation caused by highlatitude ionospheric irregular...
The comparative research of the influence of different types of auroral particle precipitation and p...
The ionosphere is characterized by a highly variable degree of ionization maintained by a wide range...
In early September 2017, several space weather events triggered disturbed conditions of the near-Ea...
In early September 2017, several space weather events triggered disturbed conditions of the near‐Ear...
During the ascending phase of solar cycle 24, a series of interplanetary coronal mass ejections (ICM...