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The electrical effects of micrometeoroids entering the terrestrial atmosphere at different speeds

Published online by Cambridge University Press:  15 January 2010

D. A. MENDIS
Affiliation:
Department of Electrical and Computer Engineering, University of California, San Diego La Jolla, CA 92037, USA (mastt42@juno.com)
D. MARAVILLA
Affiliation:
Instituto de Geofísica, UNAM, Circuito Exterior, C.U., 04510, Coyoacán, D.F., México

Abstract

Micrometeoroids entering the terrestrial atmosphere lead to two important related electrical effects. One is the electrification of the upper atmosphere along their paths and the other is the electrical charging of the micrometeoroids themselves. In this brief note we will emphasize the central role of the initial encounter speed of the incoming micrometeoroid, showing how it changes the altitude profiles of electron production and electrical charging, not just quantitatively but also qualitatively. We will discuss the underlying reasons for this, as well as their importance in meteor studies.

Type
Papers
Copyright
Copyright © Cambridge University Press 2010

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References

Bronshten, V. A. 1983 Physics of Meteoric Phenomena, Vol. 91. Dordrecht, the Netherlands: D. Raidel Pub. Co., pp. 91, 265.CrossRefGoogle Scholar
Brosch, N., Schijvarg, L. S., Podolak, M. and Rosenkrauts, M. R. 2001 Meteor observations from Israel. ESA SP-495, p. 0165.Google Scholar
Gelinas, L. J., Lynch, K. A., Kelley, M. C., Collins, S., Baker, S. and Zhou, Q. 1998 First observations of meteoric charged dust in the tropical mesosphere. Geophys. Res. Lett. 25, 4047.CrossRefGoogle Scholar
Mendis, D. A. and Maravilla, D. 2009 A note on the altitude profiles of electron production in the atmosphere by micrometeoroids entering it at different initial speeds. Geophys. Res. Lett. 36, L22804.CrossRefGoogle Scholar
Mendis, D. A., Wong, W.-H. and Rosenberg, M. 2004 On the observation of charged dust in the tropical mesosphere. Physica Scripta T113, 141.Google Scholar
Mendis, D. A., Wong, W.-H., Rosenberg, M. and Sorasio, G. 2005 Micrometeoroid flight in the upper atmosphere: electron emission and charging. J. Atm. Solar-Terr. Phys. 67, 1178.CrossRefGoogle Scholar
Öpik, E. J. 1958 Physics of Meteor Flight in the Atmosphere. New York: Interscience Publishers, Inc., p. 57.Google Scholar
Sorasio, G., Mendis, D. A. and Rosenberg, M. 2001 The role of thermionic emission in meteor physics. Planetary Space Sci. 49, 1257.CrossRefGoogle Scholar
Williams, I. P. and Murad, E. 2002 In: Meteors in the Earth's Atmosphere (ed. Murad, E. and Williams, I. P.). New York: Cambridge University Press, p. 1.Google Scholar