Hostname: page-component-77c89778f8-n9wrp Total loading time: 0 Render date: 2024-07-21T04:29:28.636Z Has data issue: false hasContentIssue false

Dust Near the Sun

Published online by Cambridge University Press:  27 February 2018

I. Mann*
Affiliation:
Max-Planck-Institut für Aeronomie, Postfach 20, D-37189 Katlenburg-Lindau, Germany

Abstract

Core share and HTML view are not available for this content. However, as you have access to this content, a full PDF is available via the ‘Save PDF’ action button.

Yielding the inner continuation of the interplanetary dust cloud, the dust at about 0.3 AU and closer to the Sun is studied under observing conditions different from those of the Zodiacal light. The F-coronal brightness indicates its optical particle properties as well as its overall spatial distribution. The present knowledge is based on visible and near infrared F-coronal observations and may be improved from data of the SOHO satellite in the near future. Some dynamical effects become particulary important for sub-μm particles in the solar vicinity. However, these particles seem to have only a small effect on the observable corona brightness, but are more accessible to in-situ experiments.

Type
IX. Zodiacal Light and Thermal Emission
Copyright
Copyright © Astronomical Society of the Pacific 1996

References

Beavers, W. I., Eitter, J J., Carr, P. H., & Cook, B. C. 1980, ApJ, 238, 349 Google Scholar
Blackwell, D. E., Dewhirst, D. W., & Ingham, M. F. 1967, Adv. Astron. Astrophys., 5, 1 Google Scholar
Clarke, D. this volume Davidson, C. W., MacQueen, R. M., & Mann, I. 1995, Planet. Space Sci., 43, 1395 Google Scholar
Durst, W. 1982, A&A, 112, 241 Google Scholar
Fechtig, H., Leinert, C., & Grün, E. 1981, in Landolt-Bornstein, New Series 2a, Schaifers, K. & Voigt, H. H., Berlin: Springer, 228 Google Scholar
Grün, E., Zook, H. A., Fechtig, H., & Giese, R. H. 1985, Icarus, 62, 244 Google Scholar
Hodapp, K.-W., MacQueen, R. M., & Hall, D. N. B. 1992, Nature, 355, 707 Google Scholar
Kneiβel, B., & Mann, I. 1991, in Origin & Evolution of Interplanetary Dust, Levasseur-Regourd, A. C. & Hasegawa, H., Dordrecht: Kluwer, 139Google Scholar
Koutchmy, S., & Lamy, P. L. 1985, in Properties & Interactions of Interplanetary Dust R. H. Giese & Lamy, P. L., Dordrecht: Reidel, 63Google Scholar
Kuhn, J. R., Lin, H., Lamy, P., Koutchmy, S., Smartt, R. N. 1994, in Infrared Solar Physics, IAU Symp. 154, Rabin, D., Jefferies, J. & Lindsey, C., Dordrecht: Kluwer, 185 Google Scholar
Lamy, P., Kuhn, J. R., Lin, H., Koutchmy, S., & Smartt, R. N. 1992, Science, 257, 1377 Google Scholar
Lamy, P. L., & Perrin, J.-M. 1986, A&A, 163, 269 Google Scholar
Levasseur-Regourd, A. C., Renard, J. B., & Dumont, R. 1991, in Origin & Evolution of Interplanetary Dust, Levasseur-Regourd, A. C. & Hasegawa, H., Dordrecht: Kluwer, 131Google Scholar
MacQueen, R. M. 1968, ApJ, 154, 1059 Google Scholar
MacQueen, R. M., Davidson, C. W., & Mann, I. this volumeGoogle Scholar
MacQueen, R. M., & Greeley, B. W. 1995, ApJ, 440, 361 Google Scholar
MacQueen, R. M., & St. Cyr, O. C. 1991, Icarus, 90, 96 Google Scholar
Maihara, T., Mizutani, K., Hiromoto, N., Takami, H., & Hasegawa, H. 1985, in Properties & Interactions of Interplanetary Dust, Giese, R. H. & P. L. Lamy, Dordrecht: Reidel, 63Google Scholar
Mann, I. 1992, A&A, 261, 329 Google Scholar
Mann, I. 1993, Planet. Space Sci., 41, 301 Google Scholar
Mann, I. 1995, Space Sci.Rev., 72, 477 Google Scholar
Mann, I., & Grün, E. 1995, Adv. Space Res., 17, No. 3, 99 Google Scholar
Mann, I., Ishimoto, H., Okamoto, H., & Mukai, T. this volumeGoogle Scholar
Mann, I., & MacQueen, R. M. 1993, A&A, 275, 293 Google Scholar
Mann, I., Okamoto, H., Mukai, T., Kimura, & Kitada, Y. 1994, A&A, 291, 1011 Google Scholar
Marsch, E., Roux, A., & the SCP Team 1995, Adv. Space Res., 17, No. 3, 31 Google Scholar
Marsden, B. G. 1989, AJ, 98, 2306 Google Scholar
Morfill, G E., & Grün, E. 1979, Planet. Space Sci., 27, 1269 Google Scholar
Mukai, T 1985, in Properties & Interactions of Interplanetary Dust, Giese, R. H. & Lamy, P. L., Dordrecht: Reidel, 59 Google Scholar
Mukai, T., & Mukai, S. 1973, PASJ, 25, 481 Google Scholar
Mukai, T., & Yamamoto, T. 1979, PASJ, 31, 585 Google Scholar
Mukai, T., Yamamoto, T., Hasegawa, H., Fujiwara, A., & Koike, C. 1974, PASJ, 26, 445 Google Scholar
Över, J. 1958, Proc. Kon. Ned. Akad. v. Wetenschapen 51B, 74Google Scholar
Peterson, A. W. 1963, ApJ, 138, 1218 Google Scholar
Peterson, A. W. 1967, ApJ, 148, L37 Google Scholar
Peterson, A. W. 1969, ApJ, 155, 1009 Google Scholar
Renard, J. B., Levasseur-Regourd, A.-C., Dumont, R. 1991, in Origin & Evolution of Interplanetary Dust, Levasseur-Regourd, A. C. & Hasegawa, H., Dordrecht: Kluwer, 199Google Scholar
Roser, S., & Staude, H. J. 1978, A&A, 67, 381 Google Scholar
Russell, H. N. 1929, ApJ, 69, 49 Google Scholar
Saxarra, U. P. 1987, Diplomarbeit, Ruhr-Universität BochumGoogle Scholar
Scherer, K., Fahr, H. J., & Banaszkiewicz, M., Icarus, submitted.Google Scholar
Sekanina, Z. 1982, AJ, 87, 1059.Google Scholar
Shcheglov, P. V., Shestakova, L. I., & Ajmanov, A. K. 1987, A&A, 173, 383 Google Scholar
Shestakova, L. I., Aimanov, A. K., & Aimanova, G. K. this volumeGoogle Scholar
Tollestrup, E. V., Fazio, G. G., Woolaway, J., Blackwell, J., & Brecher, K. 1994, in Infrared Solar Physics, D., Rabin J. T., Jefferies, & C., Lindsey, Dordrecht: Kluwer, 179Google Scholar
Tsurutani, B. T., & Randolph, J.E. 1991, in Origin & Evolution of Interplanetary Dust, A.-C. Levasseur-Regourd & H. Hasegawa, Dordrecht: Kluwer, 29Google Scholar
van de llulst, H. C. 1947, ApJ, 471, 105 Google Scholar