Hostname: page-component-586b7cd67f-t7fkt Total loading time: 0 Render date: 2024-11-25T02:09:25.575Z Has data issue: false hasContentIssue false

Organic Nanoparticles as a Component of the Interstellar Medium

Published online by Cambridge University Press:  21 February 2014

S. Kwok*
Affiliation:
Faculty of Science, The University of Hong Kong, Hong Kong, China email: [email protected]
Rights & Permissions [Opens in a new window]

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.

Mixed aromatic/aliphatic organic nanoparticles (MAON) are suggested as the carrier of the unidentified infrared emission (UIE) features. The carriers of the diffuse interstellar bands (DIB) may be gas-phase molecular products released from MAON in the interstellar medium.

Type
Contributed Papers
Copyright
Copyright © International Astronomical Union 2014 

References

Bernard-Salas, J., Cami, J., Peeters, E., Jones, A. P., Micelotta, E., & Groenewegen, M. A. T. 2012, ApJ, 757, 41Google Scholar
Cami, J., Bernard-Salas, J., Peeters, E., & Malek, S. E. 2010, Science, 329, 1180Google Scholar
Carpentier, Y., et al. 2012, A&A, 548, 40Google Scholar
Cataldo, F., Garcia-Hernádez, D. A., & Manchado, A. 2013, MNRAS, 429, 3025CrossRefGoogle Scholar
Dartois, E., Muñoz Caro, G. M., Deboffle, D., & d'Hendecourt, L. 2004, A&A, 423, L33Google Scholar
Duley, W. W. & Williams, D. A. 1979, Nature, 277, 40CrossRefGoogle Scholar
Duley, W. W. & Williams, D. A. 1981, MNRAS, 196, 269Google Scholar
Gadallah, K. A. K., Mutschke, H., & Jäger, C. 2011, A&A, 528, 56Google Scholar
Gadallah, K. A. K., Mutschke, H., & Jäger, C. 2012, A&A, 544, 107Google Scholar
García-Hernández, D. A., et al. 2012, ApJ, 760, 107Google Scholar
Godard, M., Féraud, G., Chabot, M., et al., 2011, A&A 529: 146Google Scholar
Herlin, N., Bohn, I., Reynaud, C., Cauchetier, M., Galvez, A., & Rouzaud, J.-N. 1998, A&A, 330, 1127Google Scholar
Hoyle, F. & Wickramasinghe, N. C. 1977, Nature, 268, 610CrossRefGoogle Scholar
Hu, A. & Duley, W. W. 2008, ApJ, 677, L153CrossRefGoogle Scholar
Jäger, C., Mutschke, H., Henning, T., & Huisken, F. 2008, ApJ, 689, 249Google Scholar
Jones, A. P., 2012, A&A, 542, 98Google Scholar
Jones, A. P., Duley, W. W., & Williams, D. A., 1990, QJRAS, 31, 567Google Scholar
Kwok, S. 2004, Nature, 430, 985Google Scholar
Kwok, S. 2011, Organic Matter in the Universe, WileyGoogle Scholar
Kwok, S. & Zhang, Y. 2011, Nature, 479, 80Google Scholar
Kwok, S. & Zhang, Y. 2013, ApJ, 771, 5Google Scholar
Kwok, S., Volk, K., & Bernath, P. 2001, ApJ, 554, L87Google Scholar
Mennella, V., Brucato, J. R., Colangeli, L., & Palumbo, P. 1999, ApJ, 524, L71CrossRefGoogle Scholar
Mennella, V., Baratta, G. A., Esposito, A., Ferini, G., & Pendleton, Y. J. 2003, ApJ, 587, 727CrossRefGoogle Scholar
Papoular, R. 2013, MNRAS, 434, 862Google Scholar
Papoular, R., Conrad, J., Giuliano, M., Kister, J., & Mille, G. 1989, A&A, 217, 204Google Scholar
Pino, T., Dartois, E., Cao, A.-T., et al. 2008, A&A 490: 665.Google Scholar
Sakata, A., Wada, S., Onaka, T., & Tokunaga, A. T. 1987, ApJ, 320, L63Google Scholar