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A Lower Limit on Omega-Lambda Using Gravitational Lensing in the Hubble Deep Field

Astrophysics 2009-10-30 v3

Abstract

We calculate the expected number of multiply-imaged galaxies in the Hubble Deep Field (HDF), using photometric redshift information for galaxies with mI<27m_I < 27 that were detected in all four HDF passbands. A comparison of these expectations with the observed number of strongly lensed galaxies places a lower limit on the current value of ΩmΩΛ\Omega_m-\Omega_{\Lambda}, where Ωm\Omega_m is the cosmological mass density of the universe and ΩΛ\Omega_\Lambda is the normalized cosmological constant. Based on current estimates of the HDF luminosity function and associated uncertainties in individual parameters, our 95% confidence lower limit on ΩmΩΛ\Omega_m-\Omega_{\Lambda} is between -0.44, if there are no strongly lensed galaxies in the HDF, and -0.73, if there are two strongly lensed galaxies in the HDF. If the only lensed galaxy in the HDF is the one presently viable candidate, then, in a flat universe (Ωm+ΩΛ=1\Omega_m+\Omega_\Lambda=1), ΩΛ<0.79\Omega_{\Lambda} < 0.79 (95% C.L.). These lower limits are compatible with estimates based on high-redshift supernovae and with previous limits based on gravitational lensing.

Keywords

Cite

@article{arxiv.astro-ph/9806080,
  title  = {A Lower Limit on Omega-Lambda Using Gravitational Lensing in the Hubble Deep Field},
  author = {Asantha R. Cooray and Jean M. Quashnock and M. Coleman Miller},
  journal= {arXiv preprint arXiv:astro-ph/9806080},
  year   = {2009}
}

Comments

18 pages, 3 figures and 2 tables. Final proof version, to appear in The Astrophysical Journal, Vol 511, February 1, 1999

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