Hostname: page-component-586b7cd67f-g8jcs Total loading time: 0 Render date: 2024-11-24T19:54:17.125Z Has data issue: false hasContentIssue false

The Infrared Emission Bands

Published online by Cambridge University Press:  21 February 2014

E. Peeters*
Affiliation:
Department of Physics and Astronomy, University of Western Ontario, London, ON N6A 3K7, Canada email: [email protected] SETI Institute, 189 Bernardo Avenue, Suite 100, Mountain View, CA 94043, USA
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.

Up to 10% of the total power output of star-forming galaxies is emitted in the infrared emission features at 3.3, 6.2, 7.7, 8.6 and 11.2 μm. Here, I will review the spectral characteristics of these IR emission bands, their dependence on the local environment, the implications for the physical and chemical characteristics of the carriers, and their applicability as a diagnostic tool.

Type
Contributed Papers
Copyright
Copyright © International Astronomical Union 2014 

References

Acke, B., Bouwman, J., Juhász, A., et al. 2010, ApJ, 718, 558Google Scholar
Acke, B. & van den Ancker, M. E. 2004, A&A, 426, 151Google Scholar
Allamandola, L. J., Tielens, A. G. G. M., & Barker, J. R. 1989, ApJS, 71, 733CrossRefGoogle Scholar
Bakes, E. L. O. & Tielens, A. G. G. M. 1994, ApJ, 427, 822CrossRefGoogle Scholar
Bakes, E. L. O. & Tielens, A. G. G. M. 1998, ApJ, 499, 258Google Scholar
Bauschlicher, C. W., Peeters, E., & Allamandola, L. J. 2009, ApJ, 697, 311Google Scholar
Bauschlicher, C. W. Jr & Ricca, A. 2009, ApJ, 698, 275Google Scholar
Bauschlicher, J. C. W., Peeters, E., & Allamandola, L. 2008, ApJ, 678, 316Google Scholar
Bellamy, L. 1958, The infra-red spectra of complex molecules, 2nd ed. (New York: John Wiley & Sons, Inc.)Google Scholar
Bernard-Salas, J., Peeters, E., Sloan, G. C., et al. 2009, ApJ, 699, 1541Google Scholar
Berné, O., Fuente, A., Goicoechea, J. R., et al. 2009, ApJ, 706, L160Google Scholar
Berné, O., Joblin, C., Deville, Y., et al. 2007, A&A, 469, 575Google Scholar
Berné, O., Pilleri, P., & Joblin, C. 2011, in EAS Publications Series, Vol. 46, EAS Publications Series, ed. Joblin, C. & Tielens, A. G. G. M., 49–54Google Scholar
Berné, O. & Tielens, A. G. G. M. 2012, Proceedings of the National Academy of Science, 109, 401Google Scholar
Boersma, C., Bauschlicher, C. W., Allamandola, L. J., et al. 2010, A&A, 511, A32Google Scholar
Boersma, C., Bauschlicher, C. W. Jr., Ricca, A., et al. 2013, ApJS, submittedGoogle Scholar
Boersma, C., Bouwman, J., Lahuis, F., et al. 2008, A&A, 484, 241Google Scholar
Boissel, P., Joblin, C., & Pernot, P. 2001, A&A, 373, L5Google Scholar
Borghesi, A., Bussoletti, E., & Colangeli, L. 1987, ApJ, 314, 422CrossRefGoogle Scholar
Brandl, B. R., Bernard-Salas, J., Spoon, H. W. W., et al. 2006, ApJ, 653, 1129CrossRefGoogle Scholar
Bregman, J. 1989, in IAU Symp. 135: Interstellar Dust, Vol. 135, 109Google Scholar
Bregman, J., Boersma, C., Allamandola, L.et al. 2013, in prep.Google Scholar
Bregman, J. & Temi, P. 2005, ApJ, 621, 831Google Scholar
Bregman, J. D., Bregman, J. N., & Temi, P. 2008, in Astronomical Society of the Pacific Conference Series, Vol. 381, Infrared Diagnostics of Galaxy Evolution, ed. Chary, R.-R., Teplitz, H. I., & Sheth, K., 34Google Scholar
Calzetti, D. 2011, in EAS Publications Series, Vol. 46, EAS Publications Series, ed. Joblin, C. & Tielens, A. G. G. M., 133–141Google Scholar
Cami, J., Bernard-Salas, J., Peeters, E., & Malek, S. E. 2011, in IAU Symposium, Vol. 280, IAU Symposium, 216–227Google Scholar
Cami, J., Boersma, C., Peeters, E.et al. 2013, in prep.Google Scholar
Candian, A., Kerr, T. H., Song, I.-O., McCombie, J., & Sarre, P. J. 2012, MNRAS, 426, 389Google Scholar
Carpentier, Y., Féraud, G., Dartois, E., et al. 2012, A&A, 548, A40Google Scholar
Churchwell, E., Babler, B. L., Meade, M. R., et al. 2009, PASP, 121, 213Google Scholar
Cohen, M., Tielens, A. G. G. M., Bregman, J., et al. 1989, ApJ, 341, 246Google Scholar
Draine, B. 2004, in Carnegie Observatories Astrophysics Series (eds) McWillian, A. and Reach, M., Vol. 4, 0Google Scholar
Draine, B. T. & Li, A. 2001, ApJ, 551, 807Google Scholar
Duley, W. W. & Williams, D. A. 1981, MNRAS, 196, 269Google Scholar
Duley, W. W. & Williams, D. A. 1983, MNRAS, 205, 67PGoogle Scholar
Engelbracht, C. W., Gordon, K. D., Rieke, G. H., et al. 2005, ApJ, 628, L29Google Scholar
Galliano, F., Madden, S., Tielens, A., Peeters, E., & Jones, A. 2008, ApJ, 679, 310Google Scholar
Geers, V. C., Augereau, J.-C., Pontoppidan, K. M., et al. 2006, A&A, 459, 545Google Scholar
Genzel, R., Lutz, D., Sturm, E., et al. 1998, ApJ, 498, 579Google Scholar
Gillett, F. C., Forrest, W. J., & Merrill, K. M. 1973, ApJ, 183, 87Google Scholar
Gordon, K. D., Engelbracht, C. W., Rieke, G. H., et al. 2008, ApJ, 682, 336Google Scholar
Holmlid, L. 2000, A&A, 358, 276Google Scholar
Hony, S., Van Kerckhoven, C., Peeters, E., et al. 2001, A&A, 370, 1030Google Scholar
Hudgins, D. M. & Allamandola, . 2004, in Astrophysics of Dust, ed. Witt, A. N., Astronomical Society of the Pacific, 000Google Scholar
Hudgins, D. M., Bauschlicher, C. W. Jr., & Allamandola, L. J. 2005, ApJ, 632, 316CrossRefGoogle Scholar
Joalland, B., Simon, A., Marsden, C. J., & Joblin, C. 2009, A&A, 494, 969Google Scholar
Joblin, C., Szczerba, R., Berné, O., & Szyszka, C. 2008, A&A, 490, 189Google Scholar
Joblin, C. & Tielens, A. G. G. M., eds. 2011, EAS Publications Series, Vol. 46, PAHs and the Universe: A Symposium to Celebrate the 25th Anniversary of the PAH HypothesisGoogle Scholar
Joblin, C., Tielens, A. G. G. M., Geballe, T. R., & Wooden, D. H. 1996, ApJ, 460, L119Google Scholar
Jones, A. P. 2012, A&A, 542, A98Google Scholar
Jones, A. P. & d'Hendecourt, L. 2000, A&A, 355, 1191Google Scholar
Kaneda, H., Onaka, T., & Sakon, I. 2005, ApJ, 632, L83Google Scholar
Keller, L. D., Sloan, G. C., Forrest, W. J., et al. 2008, ApJ, 684, 411Google Scholar
Kennicutt, R. C. Jr., Armus, L., Bendo, G., et al. 2003, PASP, 115, 928Google Scholar
Kerr, T. H., Hurst, M. E., Miles, J. R., & Sarre, P. J. 1999, MNRAS, 303, 446Google Scholar
Kwok, S. & Zhang, Y. 2011, Nature, 479, 80Google Scholar
Lebouteiller, V., Brandl, B., Bernard-Salas, J., Devost, D., & Houck, J. R. 2007, ApJ, 665, 390Google Scholar
Lepp, S. & Dalgarno, A. 1988, ApJ, 324, 553Google Scholar
Li, A. & Draine, B. T. 2001, ApJ, 554, 778Google Scholar
Li, A. & Draine, B. T. 2012, ApJ, 760, L35Google Scholar
Lutz, D., Spoon, H. W. W., Rigopoulou, D., Moorwood, A. F. M., & Genzel, R. 1998, ApJ, 505, L103Google Scholar
Madden, S. C., Galliano, F., Jones, A. P., & Sauvage, M. 2006, A&A, 446, 877Google Scholar
Matsuura, M., Sloan, G. C., Bernard-Salas, J., et al. 2010, ArXiv 1011.1579Google Scholar
Papoular, R., Conrad, J., Giuliano, M., Kister, J., & Mille, G. 1989, A&A, 217, 204Google Scholar
Peeters, E. 2011, in EAS Publications Series, Vol. 46, EAS Publications Series, ed. Joblin, C. & Tielens, A. G. G. M., 13–27Google Scholar
Peeters, E., Allamandola, L. J., Bauschlicher, C. W., et al. 2004a, ApJ, 604, 252Google Scholar
Peeters, E., Hony, S., Van Kerckhoven, C., et al. 2002, A&A, 390, 1089Google Scholar
Peeters, E., Spoon, H. W. W., & Tielens, A. G. G. M. 2004b, ApJ, 613, 986Google Scholar
Peeters, E., Tielens, A. G. G. M., Allamandola, L. J., et al. 2013, in prep.Google Scholar
Peeters, E., Tielens, A. G. G. M., Allamandola, L. J., & Wolfire, M. G. 2012, ApJ, 747, 44CrossRefGoogle Scholar
Petrie, S., Stranger, R., & Duley, W. W. 2003, ApJ, 594, 869Google Scholar
Pilleri, P., Montillaud, J., Berné, O., & Joblin, C. 2012, A&A, 542, A69Google Scholar
Pino, T., Dartois, E., Cao, A.-T., et al. 2008, A&A, 490, 665Google Scholar
Puget, J. L. & Léger, A. 1989, ARA&A, 27, 161Google Scholar
Rapacioli, M., Joblin, C., & Boissel, P. 2005, A&A, 429, 193Google Scholar
Rosenberg, M. J. F., Berné, O., Boersma, C., Allamandola, L. J., & Tielens, A. G. G. M. 2011, A&A, 532, A128Google Scholar
Russell, R. W., Soifer, B. T., & Willner, S. P. 1978, ApJ, 220, 568Google Scholar
Sajina, A., Yan, L., Armus, L., et al. 2007, ApJ, 664, 713Google Scholar
Sakata, A., Wada, S., Tanabe, T., & Onaka, T. 1984, ApJ, 287, L51Google Scholar
Sandstrom, K. M., Bolatto, A. D., Draine, B. T., Bot, C., & Stanimirović, S. 2010, ApJ, 715, 701Google Scholar
Sellgren, K. 1984, ApJ, 277, 623CrossRefGoogle Scholar
Sellgren, K., Uchida, K. I., & Werner, M. W. 2007, ApJ, 659, 1338Google Scholar
Simon, A. & Joblin, C. 2009, Journal of Physical Chemistry A, 113, 4878Google Scholar
Simon, A. & Joblin, C. 2010, ApJ, 712, 69Google Scholar
Sloan, G. C., Jura, M., Duley, W. W., et al. 2007, ApJ, 664, 1144Google Scholar
Sloan, G. C., Keller, L. D., Forrest, W. J., et al. 2005, ApJ, 632, 956Google Scholar
Smith, J. D. T., Draine, B. T., Dale, D. A., et al. 2007, ApJ, 656, 770Google Scholar
Stock, D. J., Peeters, E., & Choi, D. Y.Bik, A. 2013, ApJ, submitted.Google Scholar
Tielens, A. G. G. M. 2008, ARA&A, 46, 289Google Scholar
Tielens, A. G. G. M., Allamandola, L. J., Barker, J. R., & Cohen, M. 1987, in Polycyclic Aromatic Hydrocarbons and Astrophysics, 273Google Scholar
Tokunaga, A. T., Sellgren, K., Smith, R. G., et al. 1991, ApJ, 380, 452Google Scholar
van Diedenhoven, B., Peeters, E., Van Kerckhoven, C., et al. 2004, ApJ, 611, 928Google Scholar
Vermeij, R., Peeters, E., Tielens, A. G. G. M., & van der Hulst, J. M. 2002, A&A, 382, 1042Google Scholar
Verstraete, L., Leger, A., D'Hendecourt, L., Defourneau, D., & Dutuit, O. 1990, A&A, 237, 436Google Scholar
Whelan, D. G., Lebouteiller, V., Galliano, F., et al. 2013, ApJ, 771, 16Google Scholar
Yan, L., Sajina, A., Fadda, D., et al. 2007, ApJ, 658, 778Google Scholar