Phenomena induced by powerful HF pumping towards magnetic zenith with a frequency near the F-region critical frequency and the third electron gyro harmonic frequency

Multi-instrument observational data from an experiment on 13 October 2006 at the EISCAT/HEATING facility at Tromsø, Norway are analysed. The experiment was carried out in the evening hours when the electron density in the F-region dropped, and the HF pump frequency <I>f<sub>H</sub&...

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Main Authors: N. F. Blagoveshchenskaya, H. C. Carlson, V. A. Kornienko, T. D. Borisova, M. T. Rietveld, T. K. Yeoman, A. Brekke
Format: Article
Language:English
Published: Copernicus Publications 2009-01-01
Series:Annales Geophysicae
Online Access:https://www.ann-geophys.net/27/131/2009/angeo-27-131-2009.pdf
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spelling doaj-01a06e4d14084363b0b01d6a312f3b3a2020-11-24T23:47:11ZengCopernicus PublicationsAnnales Geophysicae0992-76891432-05762009-01-012713114510.5194/angeo-27-131-2009Phenomena induced by powerful HF pumping towards magnetic zenith with a frequency near the F-region critical frequency and the third electron gyro harmonic frequencyN. F. Blagoveshchenskaya0H. C. Carlson1V. A. Kornienko2T. D. Borisova3M. T. Rietveld4T. K. Yeoman5A. Brekke6Arctic and Antarctic Research Institute, St. Petersburg, RussiaEuropean Office of Aerospace Research and Development, UKArctic and Antarctic Research Institute, St. Petersburg, RussiaArctic and Antarctic Research Institute, St. Petersburg, RussiaEISCAT Scientific Association, Ramfjordbotn, NorwayDepartment of Physics and Astronomy, University of Leicester, LEI 7RH, UKUniversity of Tromsø, Tromsø, NorwayMulti-instrument observational data from an experiment on 13 October 2006 at the EISCAT/HEATING facility at Tromsø, Norway are analysed. The experiment was carried out in the evening hours when the electron density in the F-region dropped, and the HF pump frequency <I>f<sub>H</sub></I> was near and then above the critical frequency of the F2 layer. The distinctive feature of this experiment is that the pump frequency was just below the third electron gyro harmonic frequency, while both the HF pump beam and UHF radar beam were directed towards the magnetic zenith (MZ). The HF pump-induced phenomena were diagnosed with several instruments: the bi-static HF radio scatter on the London-Tromsø-St. Petersburg path, the CUTLASS radar in Hankasalmi (Finland), the European Incoherent Scatter (EISCAT) UHF radar at Tromsø and the Tromsø ionosonde (dynasonde). The results show thermal electron excitation of the HF-induced striations seen simultaneously from HF bi-static scatter and CUTLASS radar observations, accompanied by increases of electron temperature when the heater frequency was near and then above the critical frequency of the F2 layer by up to 0.4 MHz. An increase of the electron density up to 25% accompanied by strong HF-induced electron heating was observed, only when the heater frequency was near the critical frequency and just below the third electron gyro harmonic frequency. It is concluded that the combined effect of upper hybrid resonance and gyro resonance at the same altitude gives rise to strong electron heating, the excitation of striations, HF ray trapping and extension of HF waves to altitudes where they can excite Langmuir turbulence and fluxes of electrons accelerated to energies that produce ionization.https://www.ann-geophys.net/27/131/2009/angeo-27-131-2009.pdf
collection DOAJ
language English
format Article
sources DOAJ
author N. F. Blagoveshchenskaya
H. C. Carlson
V. A. Kornienko
T. D. Borisova
M. T. Rietveld
T. K. Yeoman
A. Brekke
spellingShingle N. F. Blagoveshchenskaya
H. C. Carlson
V. A. Kornienko
T. D. Borisova
M. T. Rietveld
T. K. Yeoman
A. Brekke
Phenomena induced by powerful HF pumping towards magnetic zenith with a frequency near the F-region critical frequency and the third electron gyro harmonic frequency
Annales Geophysicae
author_facet N. F. Blagoveshchenskaya
H. C. Carlson
V. A. Kornienko
T. D. Borisova
M. T. Rietveld
T. K. Yeoman
A. Brekke
author_sort N. F. Blagoveshchenskaya
title Phenomena induced by powerful HF pumping towards magnetic zenith with a frequency near the F-region critical frequency and the third electron gyro harmonic frequency
title_short Phenomena induced by powerful HF pumping towards magnetic zenith with a frequency near the F-region critical frequency and the third electron gyro harmonic frequency
title_full Phenomena induced by powerful HF pumping towards magnetic zenith with a frequency near the F-region critical frequency and the third electron gyro harmonic frequency
title_fullStr Phenomena induced by powerful HF pumping towards magnetic zenith with a frequency near the F-region critical frequency and the third electron gyro harmonic frequency
title_full_unstemmed Phenomena induced by powerful HF pumping towards magnetic zenith with a frequency near the F-region critical frequency and the third electron gyro harmonic frequency
title_sort phenomena induced by powerful hf pumping towards magnetic zenith with a frequency near the f-region critical frequency and the third electron gyro harmonic frequency
publisher Copernicus Publications
series Annales Geophysicae
issn 0992-7689
1432-0576
publishDate 2009-01-01
description Multi-instrument observational data from an experiment on 13 October 2006 at the EISCAT/HEATING facility at Tromsø, Norway are analysed. The experiment was carried out in the evening hours when the electron density in the F-region dropped, and the HF pump frequency <I>f<sub>H</sub></I> was near and then above the critical frequency of the F2 layer. The distinctive feature of this experiment is that the pump frequency was just below the third electron gyro harmonic frequency, while both the HF pump beam and UHF radar beam were directed towards the magnetic zenith (MZ). The HF pump-induced phenomena were diagnosed with several instruments: the bi-static HF radio scatter on the London-Tromsø-St. Petersburg path, the CUTLASS radar in Hankasalmi (Finland), the European Incoherent Scatter (EISCAT) UHF radar at Tromsø and the Tromsø ionosonde (dynasonde). The results show thermal electron excitation of the HF-induced striations seen simultaneously from HF bi-static scatter and CUTLASS radar observations, accompanied by increases of electron temperature when the heater frequency was near and then above the critical frequency of the F2 layer by up to 0.4 MHz. An increase of the electron density up to 25% accompanied by strong HF-induced electron heating was observed, only when the heater frequency was near the critical frequency and just below the third electron gyro harmonic frequency. It is concluded that the combined effect of upper hybrid resonance and gyro resonance at the same altitude gives rise to strong electron heating, the excitation of striations, HF ray trapping and extension of HF waves to altitudes where they can excite Langmuir turbulence and fluxes of electrons accelerated to energies that produce ionization.
url https://www.ann-geophys.net/27/131/2009/angeo-27-131-2009.pdf
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