Hostname: page-component-76fb5796d-skm99 Total loading time: 0 Render date: 2024-04-25T14:31:33.143Z Has data issue: false hasContentIssue false

Scaling Relations of Dwarf Galaxies without Supernova-Driven Winds

Published online by Cambridge University Press:  01 June 2007

K. Tassis
Affiliation:
Department of Astronomy and Astrophysics, The University of Chicago, Chicago, IL 60637, USA The Kavli Institute for Cosmological Physics, The University of Chicago, Chicago, IL 60637, USA
A. V. Kravtsov
Affiliation:
Department of Astronomy and Astrophysics, The University of Chicago, Chicago, IL 60637, USA The Kavli Institute for Cosmological Physics, The University of Chicago, Chicago, IL 60637, USA Enrico Fermi Institute, The University of Chicago, Chicago, IL 60637, USA
N. Y. Gnedin
Affiliation:
Department of Astronomy and Astrophysics, The University of Chicago, Chicago, IL 60637, USA Particle Astrophysics Group, Fermilab, Batavia, IL 60510, 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.

Nearby dwarf galaxies exhibit tight correlations between their global stellar and dynamical properties, such as circular velocity, mass-to-light ratio, stellar mass, surface brightness, and metallicity. Such correlations have often been attributed to gas or metal-rich outflows driven by supernova energy feedback to the interstellar medium. We use high-resolution cosmological simulations of high-redshift galaxies with and without energy feedback, as well as analytic modeling, to investigate whether the observed correlations can arise without supernova-driven outflows. We find that the simulated dwarf galaxies exhibit correlations similar to those observed as early as z ≈ 10 and the addition of realistic levels of supernova energy feedback has no appreciable effect on these correlations. We also show that the correlations can be well reproduced by our analytic model that accounts for gas inflow but without outflows, and star formation rate obeying the Kennicutt-Schmidt law with a critical density threshold. We argue that correlations in simulated galaxies arise due to the increasingly inefficient conversion of gas into stars in low-mass dwarf galaxies rather than supernova-driven outflows.

Type
Contributed Papers
Copyright
Copyright © International Astronomical Union 2008

References

Arimoto, N. & Yoshii, Y. 1987, A&A, 173, 23 Sharina, M. E. 2006, MNRAS, 365, 1220Google Scholar
Benson, A. J., Bower, R. G., Frenk, C. S., Lacey, C. G., Baugh, C. M., & Cole, S. 2003, ApJ, 599, 38CrossRefGoogle Scholar
Brooks, A. M., Governato, F., Booth, C. M., Willman, B., Gardner, J. P., Wadsley, J., Stinson, G., & Quinn, T. 2006, ApJl submitted (astro-ph/0609620)Google Scholar
Cole, S., Aragon-Salamanca, A., Frenk, C. S., Navarro, J. F., & Zepf, S. E. 1994, MNRAS, 271, 781CrossRefGoogle Scholar
Croton, D. J., Springel, V., White, S. D. M., De Lucia, G., Frenk, C. S., Gao, L., Jenkins, A., Kauffmann, G., Navarro, J. F., & Yoshida, N. 2006, MNRAS, 365, 11CrossRefGoogle Scholar
De Rossi, M. E., Tissera, P. B., & Scannapieco, C. 2006, ArXiv Astrophysics e-printsGoogle Scholar
Dekel, A. & Silk, J. 1986, ApJ, 303, 39CrossRefGoogle Scholar
Dekel, A. & Woo, J. 2003, MNRAS, 344, 1131CrossRefGoogle Scholar
D'Ercole, A. & Brighenti, F. 1999, MNRAS, 309, 941CrossRefGoogle Scholar
Ferrara, A. & Tolstoy, E. 2000, MNRAS, 313, 291CrossRefGoogle Scholar
Garnett, D. R. 2002, ApJ, 581, 1019CrossRefGoogle Scholar
Garnett, D. R. & Shields, G. A. 1987, ApJ, 317, 82CrossRefGoogle Scholar
Gnedin, N. Y. 2000, ApJ, 542, 535CrossRefGoogle Scholar
Gnedin, N. Y. & Abel, T. 2001, New Astronomy, 6, 437CrossRefGoogle Scholar
Grebel, E. K., Gallagher, J. S. III, & Harbeck, D. 2003, AJ, 125, 1926CrossRefGoogle Scholar
Gurovich, S., McGaugh, S. S., Freeman, K. C., Jerjen, H., Staveley-Smith, L., & De Blok, W. J. G. 2004, Publications of the Astronomical Society of Australia, 21, 412CrossRefGoogle Scholar
Heckman, T. M., Lehnert, M. D., Strickland, D. K., & Armus, L. 2000, ApJs, 129, 493CrossRefGoogle Scholar
Hoeft, M., Yepes, G., Gottlöber, S., & Springel, V. 2006, MNRAS, 371, 401CrossRefGoogle Scholar
Iliev, I. T., Ciardi, B., Alvarez, M. A., & et, al. 2006, MNRAS submitted (astro-ph/0603199)Google Scholar
Kauffmann, G., Heckman, T. M., White, S. D. M., & et, al. 2003, MNRAS, 341, 54CrossRefGoogle Scholar
Kauffmann, G., White, S. D. M., & Guiderdoni, B. 1993, MNRAS, 264, 201CrossRefGoogle Scholar
Kennicutt, R. C. 1998, ApJ, 498, 541CrossRefGoogle Scholar
Kereš, D., Katz, N., Weinberg, D. H., & Davé, R. 2005, MNRAS, 363, 2CrossRefGoogle Scholar
Klypin, A., Kravtsov, A. V., Bullock, J. S., & Primack, J. R. 2001, ApJ, 554, 903CrossRefGoogle Scholar
Kobayashi, C., Springel, V., & White, S. D. M. 2006, MNRAS submitted (astro-ph/0604107)Google Scholar
Kobulnicky, H. A. & Kewley, L. J. 2004, ApJ, 617, 240CrossRefGoogle Scholar
Kravtsov, A. V. 1999, Ph.D. ThesisGoogle Scholar
Kravtsov, A. V. 2003, ApJ, 590, L1CrossRefGoogle Scholar
Kravtsov, A. V., Gnedin, O. Y., & Klypin, A. A. 2004, ApJ, 609, 482CrossRefGoogle Scholar
Kravtsov, A. V., Klypin, A. A., & Khokhlov, A. M. 1997, ApJs, 111, 73CrossRefGoogle Scholar
Lacey, C., Guiderdoni, B., Rocca-Volmerange, B., & Silk, J. 1993, ApJ, 402, 15CrossRefGoogle Scholar
Larson, R. B. 1974, MNRAS, 169, 229CrossRefGoogle Scholar
Lecavelier des Etangs, A., Désert, J.-M., Kunth, D., Vidal-Madjar, A., Callejo, G., Ferlet, R., Hébrard, G., & Lebouteiller, V. 2004, A&A, 413, 131Google Scholar
Lee, H., Skillman, E. D., Cannon, J. M., Jackson, D. C., Gehrz, R. D., Polomski, E. F., & Woodward, C. E. 2006 a, ApJ submitted (astro-ph/0605036)Google Scholar
Lee, H., Skillman, E. D., & Venn, K. A. 2006 b, ApJ, 642, 813CrossRefGoogle Scholar
Lequeux, J., Peimbert, M., Rayo, J. F., Serrano, A., & Torres-Peimbert, S. 1979, A&A, 80, 155Google Scholar
Mac Low, M.-M., & Ferrara, A. 1999, ApJ, 513, 142CrossRefGoogle Scholar
Marcolini, A., D'Ercole, A., & Brighenti, F. 2006, MNRAS submitted (astro-ph/0602386)Google Scholar
Marri, S. & White, S. D. M. 2003, MNRAS, 345, 561CrossRefGoogle Scholar
Martin, C. L. 2005, ApJ, 621, 227CrossRefGoogle Scholar
Martin, C. L. & Kennicutt, R. C. 2001, ApJ, 555, 301CrossRefGoogle Scholar
Martin, C. L., Kobulnicky, H. A., & Heckman, T. M. 2002, ApJ, 574, 663CrossRefGoogle Scholar
Mateo, M. L. 1998, ARAA, 36, 435CrossRefGoogle Scholar
Matthews, L. D., van Driel, W., & Gallagher, J. S. 1998, AJ, 116, 2196CrossRefGoogle Scholar
Mayer, L., Kazantzidis, S., Mastropietro, C., & Wadsley, J. 2007, Nature, 445, 738CrossRefGoogle Scholar
McGaugh, S. S. 2005, ApJ, 632, 859CrossRefGoogle Scholar
McGaugh, S. S. & de Blok, W. J. G. 1997, ApJ, 481, 689CrossRefGoogle Scholar
McGaugh, S. S., Schombert, J. M., Bothun, G. D., & de Blok, W. J. G. 2000, ApJ, 533, L99CrossRefGoogle Scholar
Miller, G. E. & Scalo, J. M. 1979, ApJs, 41, 513CrossRefGoogle Scholar
Mo, H. J., Mao, S., & White, S. D. M. 1998, MNRAS, 295, 319CrossRefGoogle Scholar
Mo, H. J., Yang, X., van den Bosch, F. C., & Katz, N. 2005, MNRAS, 363, 1155CrossRefGoogle Scholar
Navarro, J. F. & Steinmetz, M. 1997, ApJ, 478, 13CrossRefGoogle Scholar
Navarro, J. F. & White, S. D. M. 1993, MNRAS, 265, 271CrossRefGoogle Scholar
Navarro, J. F. & White, S. D. M. 1994, MNRAS, 267, 401CrossRefGoogle Scholar
Ott, J., Walter, F., & Brinks, E. 2005, MNRAS, 358, 1453CrossRefGoogle Scholar
Pavlidou, V. & Fields, B. D. 2006, ApJ in printGoogle Scholar
Penston, M. V. 1970, ApJ, 162, 771CrossRefGoogle Scholar
Pettini, M., Shapley, A. E., Steidel, C. C., Cuby, J.-G., Dickinson, M., Moorwood, A. F. M., Adelberger, K. L., & Giavalisco, M. 2001, ApJ, 554, 981CrossRefGoogle Scholar
Pilyugin, L. S., Vílchez, J. M., & Contini, T. 2004, A&A, 425, 849Google Scholar
Prada, F. & Burkert, A. 2002, ApJ, 564, L73CrossRefGoogle Scholar
Renzini, A., Ciotti, L., D'Ercole, A., & Pellegrini, S. 1993, ApJ, 419, 52CrossRefGoogle Scholar
Savaglio, S., Glazebrook, K., Le, B & orgne, D., et al. , 2005, ApJ, 635, 260CrossRefGoogle Scholar
Scannapieco, C., Tissera, P. B., White, S. D. M., & Springel, V. 2006, MNRAS submitted (astro-ph/0604524)Google Scholar
Simon, J. D., Prada, F., Vilchez, J. M., Blitz, L., & Robertson, B. 2006, ApJ in press (astro-ph/0606570)Google Scholar
Skillman, E. D., Kennicutt, R. C., & Hodge, P. W. 1989, ApJ, 347, 875CrossRefGoogle Scholar
Slyz, A. D., Devriendt, J. E. G., Bryan, G., & Silk, J. 2005, MNRAS, 356, 737CrossRefGoogle Scholar
Somerville, R. S. & Primack, J. R. 1999, MNRAS, 310, 1087CrossRefGoogle Scholar
Springel, V. & Hernquist, L. 2003, MNRAS, 339, 289CrossRefGoogle Scholar
Strickland, D. K., Heckman, T. M., Colbert, E. J. M., Hoopes, C. G., & Weaver, K. A. 2004, ApJ, 606, 829CrossRefGoogle Scholar
Sutherland, R. S. & Dopita, M. A. 1993, ApJs, 88, 253CrossRefGoogle Scholar
Tassis, K., Abel, T., Bryan, G. L., & Norman, M. L. 2003, ApJ, 587, 13CrossRefGoogle Scholar
Tassis, K., Kravtsov, A., & Gnedin, N. Y. 2007, ApJ, in pressGoogle Scholar
Thacker, R. J. & Couchman, H. M. P. 2001, ApJ, 555, L17CrossRefGoogle Scholar
Tremonti, C. A., Heckman, T. M., & Kauffmann, G., et al. , 2004, ApJ, 613, 898CrossRefGoogle Scholar
van den Bosch, F. C. 2000, ApJ, 530, 177CrossRefGoogle Scholar
van den Bosch, F. C. 2001, MNRAS, 327, 1334CrossRefGoogle Scholar
van Zee, L. & Haynes, M. P. 2006, ApJ, 636, 214CrossRefGoogle Scholar
van Zee, L., Haynes, M. P., Salzer, J. J., & Broeils, A. H. 1997, AJ, 113, 1618CrossRefGoogle Scholar
Veilleux, S., Cecil, G., & Bland-Hawthorn, J. 2005, ARAA, 43, 769CrossRefGoogle Scholar
Verde, L., Oh, S. P., & Jimenez, R. 2002, MNRAS, 336, 541CrossRefGoogle Scholar
Verheijen, M. A. W. 2001, ApJ, 563, 694CrossRefGoogle Scholar
Vitvitska, M., Klypin, A. A., Kravtsov, A. V., Wechsler, R. H., Primack, J. R., & Bullock, J. S. 2002, ApJ, 581, 799CrossRefGoogle Scholar
Warren, B. E., Jerjen, H., & Koribalski, B. S. 2004, AJ, 128, 1152CrossRefGoogle Scholar
Warren, B. E., Jerjen, H., & Koribalski, B. S. 2006, AJ, 131, 2056CrossRefGoogle Scholar
Wechsler, R. H., Bullock, J. S., Primack, J. R., Kravtsov, A. V., & Dekel, A. 2002, ApJ, 568, 52CrossRefGoogle Scholar
Wong, T. & Blitz, L. 2002, ApJ, 569, 157CrossRefGoogle Scholar
Woosley, S. E. & Weaver, T. A. 1995, ApJs, 101, 181CrossRefGoogle Scholar
Young, J. S., Allen, L., Kenney, J. D. P., Lesser, A., & Rownd, B. 1996, AJ, 112, 1903CrossRefGoogle Scholar
Zaritsky, D., Kennicutt, R. C., & Huchra, J. P. 1994, ApJ, 420, 87CrossRefGoogle Scholar
Zwaan, M. A., Meyer, M. J., Staveley-Smith, L., & Webster, R. L. 2005, MNRAS, 359, L30CrossRefGoogle Scholar