The objective of this paper is to study the effect of different plasma and dust parameters on Polar Mesospheric Summer Echoes (PMSE) temporal behavior after turn-on and turn-off of radio wave heating and to use these responses to diagnose the properties of the dust layer. The threshold radar frequency and dust parameters for the enhancement or suppression of radar echoes after radio wave heating turn-on are investigated for measured mesospheric plasma parameters. The effect of parameters such as the electron temperature enhancement during heating, dust density, dust charge polarity, ion-neutral collision frequency, electron density and dust radius on the temporal evolution of electron irregularities associated with PMSE are investigated. Th...
We discuss the influence of charged dust on radar observations in the Earth ionosphere. This region ...
During July of 1999, experiments using the EISCAT VHF radar and the Heating facility were conducted ...
Polar Mesospheric Winter Echoes (PMWE) are strong coherent radar echoes, from the upper mesosphere ...
The objective of this paper is to study the effect of different plasma and dust parameters on Polar...
This paper presents the first study of the modulation of polar mesospheric winter echoes (PMWE) by a...
The behavior of polar mesospheric summer echoes (PMSEs) during an electron precipitation event is in...
Important observational manifestations of subvisible mesospheric dust are Polar Mesospheric Summer E...
Polar Mesospheric Summer Echoes (PMSE) are a high latitude mesosphere phenomena that are observed at...
The first true common volume observations of the PMSE source region with 4 radars are presented in t...
This paper was published by AGU. Copyright 2020 American Geophysical Union.A new technique for inves...
Polar mesospheric summer echo (PMSE) formation is linked to charged dust/ice particles in the mesosp...
We present the results from investigation of spectra of polar mesospheric summer echoes (PMSE) obser...
Large amounts of meteoric particles ablate globally into the Earth’s atmosphere each day, and they i...
The observations of Polar Mesosphere Summer Echoes (PMSE) were carried out using the sporadic data o...
The first high-frequency (HF, 8 MHz) observations of the modulation of polar mesospheric summer echo...
We discuss the influence of charged dust on radar observations in the Earth ionosphere. This region ...
During July of 1999, experiments using the EISCAT VHF radar and the Heating facility were conducted ...
Polar Mesospheric Winter Echoes (PMWE) are strong coherent radar echoes, from the upper mesosphere ...
The objective of this paper is to study the effect of different plasma and dust parameters on Polar...
This paper presents the first study of the modulation of polar mesospheric winter echoes (PMWE) by a...
The behavior of polar mesospheric summer echoes (PMSEs) during an electron precipitation event is in...
Important observational manifestations of subvisible mesospheric dust are Polar Mesospheric Summer E...
Polar Mesospheric Summer Echoes (PMSE) are a high latitude mesosphere phenomena that are observed at...
The first true common volume observations of the PMSE source region with 4 radars are presented in t...
This paper was published by AGU. Copyright 2020 American Geophysical Union.A new technique for inves...
Polar mesospheric summer echo (PMSE) formation is linked to charged dust/ice particles in the mesosp...
We present the results from investigation of spectra of polar mesospheric summer echoes (PMSE) obser...
Large amounts of meteoric particles ablate globally into the Earth’s atmosphere each day, and they i...
The observations of Polar Mesosphere Summer Echoes (PMSE) were carried out using the sporadic data o...
The first high-frequency (HF, 8 MHz) observations of the modulation of polar mesospheric summer echo...
We discuss the influence of charged dust on radar observations in the Earth ionosphere. This region ...
During July of 1999, experiments using the EISCAT VHF radar and the Heating facility were conducted ...
Polar Mesospheric Winter Echoes (PMWE) are strong coherent radar echoes, from the upper mesosphere ...