No CrossRef data available.
Article contents
Simulation in Laboratory of Solid Grains Present in Space
Published online by Cambridge University Press: 12 April 2016
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.
Laboratory data on cosmic dust analogue materials are compared with recent results obtained by means of spectroscopy and mass spectrometry on cometary dust, meteorites and interplanetary dust. Their actual chemical and physical properties can be further clarified, as well as possible links with interstellar dust.
- Type
- Interplanetary Dust: Physical and Chemical Analysis
- Information
- Copyright
- Copyright © Kluwer 1991
References
Allamandola, L. J., Sandford, S. A. and Wopenka, B. (1987) ’Interstellar polycyclic aromatic hydrocarbons and carbon in interplanetary dust particles and meteorites’, Science
237, 56–59.Google Scholar
Anders, E., Lewis, R.S., Ming, T., Zinner, E. (1989) ’ Interstellar grains in meteorites: diamond and silicon carbide’, in Allamandola, L. J. and Tielens, A. G. G. M. (eds.), Interstellar Dust, Kluwer Academic Publishers, Dordrecht, 389–402.Google Scholar
Borghesi, A., Bussoletti, E., Colangeli, L. and de Blasi, C. (1985) ’Laboratory study of SiC submicron particles at IR wavelengths: a comparative analysis’, Astron. Astrophys. 153, 1–8.Google Scholar
Bussoletti, E., Colangeli, L., Borghesi, A. and Orofino, V. (1987) ’Tabulated extinction efficiencies for various types of submicron amorphous carbon grains in the wavelength range 1000 Å - 300 μm’, Astron. Astrophys. Suppl. Ser. 70, 257–268.Google Scholar
Chyba, C. and Sagan, C. (1987) ’Infrared emission by organic grains in the coma of comet Halley’, Nature
330, 350–353.Google Scholar
Colangeli, L., Schwehm, G., Bussoletti, E., Fonti, S., Blanco, A. and Orofino, V. (1990) ’Hydrogenated amorphous carbon grains in comet Halley ?’, Astrophys. J.
348, 718–724.Google Scholar
Cronin, J.R. and Pizzarello, S. (1990) ’Aliphatic hydrocarbons of the Murchison meteorite’, Geochim. Cosmochim. Acta, in press.Google Scholar
Fonti, S., Blanco, A., Bussoletti, E., Colangeli, L., Lugara’, M., Mennella, V., Orofino, V. and Scamarcio, G. (1990) ’ Raman spectra of different carbonaceous materials of astrophysical interest’, Infrared Phys. 30, 19–25.CrossRefGoogle Scholar
Frenklach, M., Carmer, C.S. and Feigelson, E.D. (1989) ’Silicon carbide and the origin of interstellar carbon grains’, Nature
339, 196–198.CrossRefGoogle Scholar
Hanner, M.S., Newburn, R.L., Gehrz, R.D., Harrison, T., Ney, E.P. and Hayward, T.L. (1990) ’ The infrared spectrum of comet Bradfield (1987s) and the silicate emission feature’, Astrophys. J.
348, 312–321.CrossRefGoogle ScholarPubMed
Jessberger, E.K., Christoforidis, A. and Kissel, J. (1988) ‘Aspects of the major element composition of Halley’s dust’, Nature
332, 691–695.Google Scholar
You have
Access