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Determination of wave growth from measured distribution functions and transport theory

Published online by Cambridge University Press:  13 March 2009

C. T. Dum
Affiliation:
Maz-Planck-Institut fü r Physik und AstrophysikInstitut fü r extraterrestrische Physik8046 Garching, Federal Republic of Germany
E. Marsch
Affiliation:
Maz-Planck-Institut fü r Physik und AstrophysikInstitut fü r extraterrestrische Physik8046 Garching, Federal Republic of Germany
W. Pilipp
Affiliation:
Maz-Planck-Institut fü r Physik und AstrophysikInstitut fü r extraterrestrische Physik8046 Garching, Federal Republic of Germany

Abstract

A stability analysis which directly uses particle distribution functions determined from experiments or transport theory, rather than model distributions, is carried out. The features of distribution functions relevant to whistlers, ion cyclotron waves, including their low-frequency extensions for propagation along the magnetic field, and to ion-acoustic waves are analyzed in detail. The dependence of wave growth on the precise shape of the distributions and the numerical feasibility of the method is demonstrated by the use of measured solar wind distributions.

Type
Research Article
Copyright
Copyright © Cambridge University Press 1980

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References

REFERENCES

Abramowitz, M. & Stegun, I. A. 1965 Handbook of Mathematical Functions. Dover.Google Scholar
Adati, K., Iguchi, H., Kawabe, T., Kono, K., Mitarai, O., Muraoka, K. & Sugihara, R. 1975 Phys. Rev. Lett. 35, 280.Google Scholar
Abraham-Shrauner, B., Asbridge, J. R., Bame, S. C. & Feldman, W. C. 1979 J. Geophys. Res. 84, 553.Google Scholar
Abraham-Shrauner, B. & Feldman, W. C. 1977 a J. Plasma Phys. 17, 123.Google Scholar
Abraham-Shrauner, B. & Feldman, W. C. 1977 b J. Geophys. Res.. 82, 1889.Google Scholar
Baader, H. R., Pilipp, W. O. & , lk H. J. 1973 J. Geophys. Res. 78, 6737.CrossRefGoogle Scholar
Cuperman, S., Gomberoff, L. & Sternles, A. 1975 J. Plasma Phys. 13, 259.CrossRefGoogle Scholar
Delcroix, J. L. 1967 Plasma Physics, Appendix 2B. Wiley.Google Scholar
Dum, C. T. 1975 Phys. Rev. Lett. 35, 947.Google Scholar
Dum, C. T. 1978 a Phys. Fluids, 21, 945.Google Scholar
Dum, C. T. 1978 b Phys. Fluids, 21, 956.CrossRefGoogle Scholar
Dum, C. T. & Chodura, R. 1978 URSI XXth General Assembly, Symposium on Wave Instabilities in Space Plasmas, Helsinki.Google Scholar
Dum, C. T., Chodura, R. & Biskamp, D. 1974 Phys. Rev. Lett. 32, 1231.CrossRefGoogle Scholar
Dum, C. T., Marsoh, E., Pilipp, W. O. & Gurnett, D. A. 1979 Lecture Notes in Physics. Springer.Google Scholar
Feldman, W. C., Asbridge, J. R., Bame, S. J. & Montgomery, M. D. 1973 J. Geophys. Res. 78, 2017.CrossRefGoogle Scholar
Feldman, W. C., Asbridge, J. R., Bame, S. J. & Montgomery, M. D. 1974 Rev. Geophys. Space Phys. 12, 715.Google Scholar
Feldman, W. C., Asbridge, J. R., Bame, S. J., Montgomery, M. D. & Gary, S. P. 1975 J. Geophys. Res. 80, 4181.CrossRefGoogle Scholar
Forslund, D. W. 1970 J. Geophys. Res. 75, 17.Google Scholar
Eried, B. D. & Conte, S. D. 1961 The plasma dispersion function. Academic.Google Scholar
Gary, S. P. 1978 a J. Plasma Phys. 20, 47.CrossRefGoogle Scholar
Gary, S. P. 1978 b.J. Geophys. Res. 83, 2504.CrossRefGoogle Scholar
Gary, S. P. & Feldman, W. C. 1977 J. Geophys. Res. 82, 1087.CrossRefGoogle Scholar
Gary, S. P., Feldman, W. C., Forslund, D. W. & Montgomery, M. D. 1975 J. Geophys. Res. 80, 4197.CrossRefGoogle Scholar
Gary, S. P., Montgomery, M. D., Feldman, W. C. & Forslund, D. W. 1976 J. Geophys. Res. 81, 1241.CrossRefGoogle Scholar
Grad, H. 1949 Comm. Pure Appl. Math. 2, 325.CrossRefGoogle Scholar
Hollweg, J. V. & , lk H. J. 1970 J. Geophys. Res. 75, 5297.Google Scholar
Jones, W. D., Lee, A., Gleman, S. M. & Doucet, H. J. 1975 Phys. Rev. Lett. 35, 1349.CrossRefGoogle Scholar
Kennel, C. F. & Scarf, F. L. 1968 J. Geophys. Res. 73, 6149.CrossRefGoogle Scholar
Lakhina, G. S. 1978 Solar Phys. 57, 467.CrossRefGoogle Scholar
Lemons, P. S., Asbridge, J. R., Bame, S. J., Feldmann, W. C., Gary, S. P. & Gosling, J. T. 1979 J. Geophys. Res. 84, 2135.CrossRefGoogle Scholar
Leubner, M. P. 1978 J. Geophys. Res. 83, 3900.CrossRefGoogle Scholar
Manheimer, W. M. 1977 Phys. Fluids, 20, 265.Google Scholar
Marsch, E., Pilipp, W. G., Schwenn, R., , hlhä user K.-H. & Rosenbauer, H. 1979 Lecture Notes in Physics. Springer.Google Scholar
Montgomery, M. P., Asbridge, J. R. & Bame, S. J. 1970 J. Geophys. Res. 75, 1217.CrossRefGoogle Scholar
Montgomery, M. D., Bame, S. J. & Hundhausen, A. J. 1968 J. Geophys. Res. 73, 4999.CrossRefGoogle Scholar
Montgomery, M. D., Gary, S. P., Feldman, W. C. & Forslund, P. W. 1976 J. Geophys. Res. 81, 2743.Google Scholar
Olbert, S., Jessen, J., Belcher, J. & Lazarus, A. J. 1979 Lecture Notes in Physics. Springer.Google Scholar
Pilipp, W. & , lk H. J. 1971 J. Plasma Phys. 6, 1.CrossRefGoogle Scholar
Pilipp, W., Schwent, R., Marsch, E., , hlhä user K.-H. & Rosenbauer, H. 1979 Lecture Notes in Physics. Springer.Google Scholar
Rosenbauer, H., Schwenn, R., Marsch, E., Meyer, B., Miggenrieder, H.Montgomery, M. D., , hlhä user K.-H., Pilipp, W., Voges, W. & Zink, S. M. 1977 J. Geophys. 42, 561.Google Scholar
Singer, C. E. & Roxburgh, I. W. 1977 J. Geophys. Res. 82, 2677.CrossRefGoogle Scholar
Spitzer, L. & Härm, R. 1953 Phys. Rev. 89, 977.CrossRefGoogle Scholar
Sudan, R. N. 1965 Phys. Rev. A 139, 78.CrossRefGoogle Scholar