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At least 19 records

A theory of geomagnetic micropulsations. I.

Geomagnetic micropulsations mechanism, discussing hydromagnetic waves transmission generated by interface instability between solar wind and magnetosphere, noting transmission path role

Sen, A. K.

Universal instability associated with the plasmapause and its role in geomagnetic micropulsations.

The observed close correlation between the plasmapause and micropulsations is explained on the basis of a universal instability model. Both theoretical and experimental studies of a nonhomogeneous magnetoplasma indicate that a steep plasma density gradient at the plasmapause is likely the origin of the universal instability in the magnetosphere. Drift waves excited at the plasmapause may be unstable in the direction of the electron drift and propagate eastward nearly perpendicularly to the magnetic field. The drift waves, however, tend to convert very quickly to ion sound or Alfven waves with a much larger phase velocity parallel to the magnetic field. This may be a possible source mechanism for rather regular geomagnetic micropulsations, and specific mechanisms are identified for the long- and short-period cases.

Kikuchi, H.

Micropulsation periods and the size of the magnetosphere

Using a set of 112 magnetopause locations selected from those obtained in recent years with the aid of Imp satellites on the dayside of the magnetosphere over 0600-1800 LT, extended results are presented on the problem of geomagnetic micropulsation periods in relation to magnetospheric parameters. These results include the finding that the two groups represented by micropulsation period ranges from 20 to 40 sec and from 40 to 80 sec, respectively, have a completely different dependence on the radial distance of the magnetopause from satellite experiments.

Patel, V. L.

Kelvin-Helmholtz instability and the variation of geomagnetic pulsation activity

It is shown that the observed local time variation of dayside geomagnetic micropulsations is consistent with the Kelvin-Helmholtz generation mechanism operating at the magnetopause. The variation of the angle between the interplanetary magnetic field and the magnetopause around the magnetosphere causes variations in the magnetosheath magnetic field, which in turn lead to local time variations in micropulsation amplitudes. Morning sector pulsations are expected to be larger than afternoon sector pulsations. Furthermore, large-amplitude pulsations are expected to be more frequently observed when the angle between the interplanetary magnetic field and the solar wind velocity in front of the bow shock is small.

Lee, L. C.