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The Vc − σ0 relation of galaxies

Published online by Cambridge University Press:  01 July 2007

Stéphane Courteau
Affiliation:
Department of Physics, Engineering Physics & Astronomy, Queen's University, Kingston, Ontario, Canada email: courteau@astro.queensu.ca, mcdonald@astro.queensu.ca, widrow@astro.queensu.ca
Michael McDonald
Affiliation:
Department of Physics, Engineering Physics & Astronomy, Queen's University, Kingston, Ontario, Canada email: courteau@astro.queensu.ca, mcdonald@astro.queensu.ca, widrow@astro.queensu.ca
Lawrence M. Widrow
Affiliation:
Department of Physics, Engineering Physics & Astronomy, Queen's University, Kingston, Ontario, Canada email: courteau@astro.queensu.ca, mcdonald@astro.queensu.ca, widrow@astro.queensu.ca
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Abstract

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Courteau et al. (2007a) reported on the dependence of the ratio of a galaxy's maximum circular velocity, Vc, to its central velocity dispersion, σ0, on morphology, or equivalently total light concentration. This Vc − σ0–concentration relation, which involves details about the local and global galaxy physics, poses a fundamental challenge for galaxy structure models. Furthermore, not only must these models reproduce the Vc − σ0 relation and its various dependences, they must simultaneously match other fundamental scaling relations such as the velocity-size-luminosity and color-luminosity relations. We focus here on the interpretation of parameters that enter the Vc − σ0 relation to enable proper data-model comparisons and follow-up studies by galaxy modelers and observers.

Type
Contributed Papers
Copyright
Copyright © International Astronomical Union 2008

References

Binney, J. & Tremaine, S. 1987, Princeton, NJ, Princeton University Press, 1987; see p. 205.Google Scholar
Buyle, P., Ferrarese, L., Gentile, G., Dejonghe, H., Baes, M., & Klein, U. 2006, MNRAS, 373, 700CrossRefGoogle Scholar
Cappellari, M., et al. 2006, MNRAS, 366, 1126CrossRefGoogle Scholar
Courteau, S., Andersen, D. R., Bershady, M. A., MacArthur, L. A., & Rix, H.-W. 2003, ApJ, 594, 208CrossRefGoogle Scholar
Courteau, S., McDonald, M., Widrow, L. M., & Holtzman, J. 2007a, ApJL, 655, L21CrossRefGoogle Scholar
Courteau, S., Dutton, A. A., van den Bosch, F., MacArthur, L. A., Dekel, A., McIntosh, D. H., & Dale, D. A. 2007b, ArXiv e-prints, 708, arXiv:0708.0422Google Scholar
Dutton, A. A., van den Bosch, F. C., Dekel, A., & Courteau, S. 2007, ApJ, 654, 27CrossRefGoogle Scholar
Gebhardt, K., et al. 2000, ApJL, 539, L13CrossRefGoogle Scholar
Gerhard, O., Jeske, G., Saglia, R. P., & Bender, R. 1998, MNRAS, 295, 197Google Scholar
Gerhard, O., Kronawitter, A., Saglia, R. P., & Bender, R. 2001, AJ, 121, 1936CrossRefGoogle Scholar
Gnedin, O. Y., Weinberg, D. H., Pizagno, J., Prada, F., & Rix, H.-W. 2006, ArXiv Astrophysics e-prints, arXiv:astro-ph/0607394Google Scholar
Graham, A. W., Erwin, P., Caon, N., & Trujillo, I. 2001, ApJL, 563, L11CrossRefGoogle Scholar
Ho, L. C. 2007, ArXiv e-prints, 706, arXiv:0706.4347Google Scholar
Jorgensen, I., Franx, M., & Kjaergaard, P. 1995, MNRAS, 276, 1341Google Scholar
Kronawitter, A., Saglia, R. P., Gerhard, O., & Bender, R. 2000, A&A Supp., 144, 53Google Scholar
Kuijken, K. & Dubinski, J. 1995, MNRAS, 277, 1341CrossRefGoogle Scholar
Lotz, J. M., Primack, J., & Madau, P. 2004, AJ, 128, 163CrossRefGoogle Scholar
MacArthur, L. A., Ellis, R. S., & Treu, T. 2007, Proceedings IAU Symposium 245, Eds. Bureau, M., Athanassoula, E. & Barbuy, B.Google Scholar
Peñarrubia, J., McConnachie, A., & Navarro, J. F. 2007, ArXiv Astrophysics e-prints, arXiv:astro-ph/0701780Google Scholar
Pizzella, A., Corsini, E. M., Vega Beltrán, J. C., & Bertola, F. 2004, A&A, 424, 447Google Scholar
Pizzella, A., Corsini, E. M., Dalla Bontà, E., Sarzi, M., Coccato, L., & Bertola, F. 2005, ApJ, 631, 785CrossRefGoogle Scholar
Rhee, G., Valenzuela, O., Klypin, A., Holtzman, J., & Moorthy, B. 2004, ApJ, 617, 1059CrossRefGoogle Scholar
Spekkens, K. & Sellwood, J. A. 2007, ArXiv e-prints, 708, arXiv:0708.2852Google Scholar
Strateva, I., et al. 2001, AJ, 122, 1861CrossRefGoogle Scholar
Valenzuela, O., et al. 2007, ApJ, 657, 773CrossRefGoogle Scholar
Whitmore, B. C., Schechter, P. L., & Kirshner, R. P. 1979, ApJ, 234, 68CrossRefGoogle Scholar
Widrow, L. M. & Dubinski, J. 2005, ApJ, 631, 838CrossRefGoogle Scholar