Spectral features of ionospheric plasma waves excited by powerful HF radio waves radiated at frequencies near electron gyroharmonics and F2-layer critical frequency

Author:

Borisova Tatiana1ORCID,Blagoveshchenskaya Nataly1ORCID,Kalishin Alexey1ORCID

Affiliation:

1. Arctic and Antarctic Research Institute

Abstract

We present the result of the studies into characteristics of high-latitude ionospheric F-region longitudinal plasma waves (Langmuir and ion-acoustic), caused by the impact of powerful HF radio waves of ordinary (O-mode) or extraordinary (X-mode) polarization of the EISCAT/Heating facility, Tromsø, Norway. The powerful HF radio waves on October 20, 2012 and February 26, 2013 were emitted in the direction of the magnetic zenith with a step change in the effective radiation power (ERP). The radiation frequency fH of the EISCAT/Heating facility on February 26, 2013 was close to the F2-layer critical frequency foF2 (fH/foF2~1) and exceeded the electron gyroresonance frequency fH>5fce. On October 20, 2012, the conditions fH/foF2~0.85–0.95 and fH<6fce were fulfilled. Analysis of EISCAT measurements of an incoherent scatter radar (ISR) at a frequency of 930 MHz, spatially aligned with the heating facility for radiation conditions ERP<200 MW, has shown that parametric decay instabilities are excited at the ionospheric heights where the pump frequency is close to the plasma Langmuir frequency, fH≈fPL. We have studied peculiarities of excitation of the decay parametric instabilities as a function of height in the ionosphere and pump wave polarization, the ratios between fH and foF2, and also fH and nfce.

Publisher

Infra-M Academic Publishing House

Subject

Space and Planetary Science,Atmospheric Science,Geophysics

Reference16 articles.

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2. Borisova T.D., Blagoveshchenskaya N.F., Yeoman T.K., Hagstrom I. Influence of effective radiation power of EISCAT/Heating facility on artificial ionospheric turbulences induced in high-latitude F region. Izvestiya vuzov. Radiofizika [Radiophysics and Quantum Electronics]. 2017, vol. 60, no. 4, pp. 305–325. (In Russian)., Borisova T.D., Blagoveshchenskaya N.F., Yeoman T.K., Hagstrom I. Influence of effective radiation power of EISCAT/Heating facility on artificial ionospheric turbulences induced in high-latitude F region. Izvestiya vuzov. Radiofizika [Radiophysics and Quantum Electronics]. 2017, vol. 60, no. 4, pp. 305–325. (In Russian).

3. Borisova T.D., Blagoveshchenskaya N.F., Rietveld M.T., Hagstrom I. Shifted plasma lines in heating experiments in high-latitude ionosphere at pump wave frequencies near harmonics of electron gyroresonances. Izvestiya vuzov. Radiofizika [Radiophysics and Quantum Electronics]. 2018, vol. 61, no. 10, pp. 810–830. (In Russian)., Borisova T.D., Blagoveshchenskaya N.F., Rietveld M.T., Hagstrom I. Shifted plasma lines in heating experiments in high-latitude ionosphere at pump wave frequencies near harmonics of electron gyroresonances. Izvestiya vuzov. Radiofizika [Radiophysics and Quantum Electronics]. 2018, vol. 61, no. 10, pp. 810–830. (In Russian).

4. Borisova T.D., Blagoveshchenskaya N.F., Kalishin A.S. Features of artificial ionosphere turbulence induced by the O- and X-mode HF heating near the f2-layer critical frequency. Solar-Terr. Phys. 2023, vol. 9, no. 1, pp. 21–30. DOI: 10.12737/stp-91202303., Borisova T.D., Blagoveshchenskaya N.F., Kalishin A.S. Features of artificial ionosphere turbulence induced by the O- and X-mode HF heating near the f2-layer critical frequency. Solar-Terr. Phys. 2023, vol. 9, no. 1, pp. 21–30. DOI: 10.12737/stp-91202303.

5. DuBois D.F., Russell D.A., Cheung P.Y., Sulzer M.P. High-power high-frequency-induced Langmuir turbulence in the smooth ionosphere at Arecibo. I. Theoretical predictions for altitude-resolved plasma line radar spectra. Phys. Plasmas. 2001, vol. 8, no. 3, p. 791. DOI: 10.1063/1.1345703., DuBois D.F., Russell D.A., Cheung P.Y., Sulzer M.P. High-power high-frequency-induced Langmuir turbulence in the smooth ionosphere at Arecibo. I. Theoretical predictions for altitude-resolved plasma line radar spectra. Phys. Plasmas. 2001, vol. 8, no. 3, p. 791. DOI: 10.1063/1.1345703.

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