Hostname: page-component-76fb5796d-9pm4c Total loading time: 0 Render date: 2024-04-25T16:39:06.524Z Has data issue: false hasContentIssue false

The Extragalactic Radio Sky at Faint Flux Densities

Published online by Cambridge University Press:  05 March 2013

Carole Jackson*
Affiliation:
CSIRO Australia Telescope National Facility, Epping NSW 1710, Australia. Email: Carole.Jackson@csiro.au
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.

In this paper we present simulations of the extragalactic radio sky at 151, 325, and 1400 MHz based on number density predictions from models of the evolution of the radio luminosity function. From these simulations we predict typical source distributions, allowing us to estimate the natural confusion limit to faint flux density limits. The results are relevant to the science and design goals of future radio facilities, namely the Square Kilometre Array, the low-frequency array, and their demonstrator projects.

Type
Research Article
Copyright
Copyright © Astronomical Society of Australia 2005

References

Bridle, A. H., Davis, M. M., Fomalont, E. B., & Lequeux, J. 1972, AJ, 77, 405 Google Scholar
Bock, D. C., Large, M. I., & Sadler, E. M. 1999, AJ, 117, 1578 CrossRefGoogle Scholar
Carilli, C. L., Gnedin, N. Y., & Owen, F. 2002, ApJ, 575, 145 CrossRefGoogle Scholar
Condon, J. J. 1983, ApJS, 53, 459 CrossRefGoogle Scholar
Condon, J. J. 1992, ARA&A, 30, 575 Google Scholar
Condon, J. J., Cotton, W. D., Greisen, E. W., Yin, Q. F., Perley, R. A., Taylor, G. B., & Broderick, J. J. 1998, AJ, 115, 1693 Google Scholar
Dunlop, J. S., & Peacock, J. A. 1990, MNRAS, 247, 19 Google Scholar
Fanaroff, B. L., & Riley, J. M. 1972, MNRAS, 167, 31P Google Scholar
Fanti, R., Fanti, C., Schilizzi, R. T., Spencer, R. E., Rendong, N., van Breugel, W. J. M., & Venturi, T. 1990, A&A, 231, 333 Google Scholar
Fomalont, E. B., Bridle, A. H., & Davis, M. M. 1974, A&A, 36, 273 Google Scholar
Giallongo, E., Menci, N., Poli, F., D'Odorico, S., & Fontana, A. 2000, ApJ, 530, L73 CrossRefGoogle Scholar
Gruppioni, C., Zamorani, G., de Ruiter, H. R., Parma, P., Mignoli, M., & Lari, C. 1997, MNRAS, 286, 470 Google Scholar
Haarsma, D. B., Partridge, R. B., Windhorst, R. A., & Richards, E. A. 2000, ApJ, 544, 641 Google Scholar
Hales, S. E. G., Baldwin, J. E., & Warner, P. J. 1988, MNRAS, 234, 919 CrossRefGoogle Scholar
Hopkins, A. M., Windhorst, R., Cram, L., & Ekers, R. 2000, ExA, 10, 419 Google Scholar
Jackson, C. A., & Wall, J. V. 1999, MNRAS, 304, 160 Google Scholar
Jackson, C. A., & Wall, J. V. 2001, in ASP Conf. Ser. 250, Particles & Fields in Radio Galaxies, eds. R. A. Laing, & K. M. Blundell (San Francisco, CA: ASP), 400 Google Scholar
Laing, R. A., Riley, J. M., & Longair, M. S. 1983, MNRAS, 204, 151 Google Scholar
Magliocchetti, M., et al. 2002, MNRAS, 333, 100 CrossRefGoogle Scholar
Mitchell, K. J., & Condon, J. J. 1985, AJ, 90, 1957 Google Scholar
Prandoni, I., Gregorini, L., Parma, P., de Ruiter, H. R., Vettolani, G., Wieringa, M. H., & E kers, R. D. 2000, A&A, 365, 392 Google Scholar
Prandoni, I., Gregorini, L., Parma, P., de Ruiter, H. R., Vettolani, G., Zanichelli, A., & Wieringa, M. H. 2001, A&A, 369, 787 Google Scholar
Rengelink, R. B., Tang, Y., de Bruyn, A. G., Miley, G. K., Bremer, M. N., Rottgering, H. J. A., & Bremer, M. A. R. 1997, A&AS, 124, 259 Google Scholar
Richards, E. A. 2000, ApJ, 533, 611 Google Scholar
Sadler, E. M., et al. 2002, MNRAS, 329, 227 CrossRefGoogle Scholar
Wall, J. V., & Cooke, D. J. 1975, MNRAS, 171, 9 Google Scholar
White, R. L., Becker, R. H., Helfand, D. J., & Gregg, M. D. 1997, ApJ, 475, 479 Google Scholar