Influences of shear in the ion parallel drift velocity and of inhomogeneous perpendicular electric field on generation of oblique ion acoustic waves

It is well known that the broadband electrostatic turbulence observed in the topside auroral ionosphere can be identified with electrostatic ion cyclotron and/or oblique ion acoustic waves. Under certain conditions generation of the ion cyclotron modes is inhibited, so that the oblique ion acoustic...

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Veröffentlicht in:Journal of geophysical research. Space physics 2016-03, Vol.121 (3), p.2693-2703
Hauptverfasser: Ilyasov, Askar, Chernyshov, Alexander, Mogilevsky, Mikhail, Golovchanskaya, Irina, Kozelov, Boris
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Sprache:eng
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Zusammenfassung:It is well known that the broadband electrostatic turbulence observed in the topside auroral ionosphere can be identified with electrostatic ion cyclotron and/or oblique ion acoustic waves. Under certain conditions generation of the ion cyclotron modes is inhibited, so that the oblique ion acoustic waves become the prevailing part of the broadband noise. While generation of ion cyclotron waves by the inhomogeneous distribution of energy density (IEDD) instability has been actively studied in recent years, much less attention was paid to the excitation of ion acoustic waves by means of the IEDD instability. In this work, influence of shear in the ion parallel drift velocities and of inhomogeneous perpendicular electric field on generation of nonlocal oblique ion acoustic mode is studied. It is demonstrated that the shear of the ion parallel drift velocities can generate ion acoustic waves. It is shown that this mechanism of instability development provides broadband spectrum in the frequency range around 0.1 of ion gyrofrequency, and thus, this instability can be invoked to explain the observed broadband electrostatic turbulence in the auroral region. Effect of the main background plasma parameters on excitation of oblique ion acoustic waves is analyzed. Key Points Ion parallel velocity shear can excite oblique ion acoustic waves in the auroral zone Effect of plasma parameters on excitation of the nonlocal ion acoustic waves is studied Discussed plasma instability can be invoked to explain broadband electrostatic turbulence
ISSN:2169-9380
2169-9402
DOI:10.1002/2015JA022117