A Strong-Lens Survey in AEGIS: the influence of large scale structure
L. A. Moustakas, P. J. Marshall, J. A. Newman, A. L. Coil, M. C. Cooper, M. Davis, C. D. Fassnacht, P. Guhathakurta, A. Hopkins, A. Koekemoer, N. P. Konidaris, J. M. Lotz, C. N. A. Willmer
Abstract
We report on the results of a visual search for galaxy-scale strong gravitational lenses over 650 arcmin2 of HST/ACS imaging in the DEEP2-EGS field. In addition to a previously-known Einstein Cross (the "Cross," HST J141735+52264, with zlens=0.8106 and a published zsource=3.40), we identify two new strong galaxy-galaxy lenses with multiple extended arcs. The first, HST J141820+52361 (the ``Dewdrop''; zlens=0.5798, lenses two distinct extended sources into two pairs of arcs zsource=0.while), 9818 the second, HST J141833+52435 (the ``Anchor''; zlens=0.4625), produces a single pair of arcs (source redshift not yet known). All three definite lenses are fit well by simple singular isothermal ellipsoid models including external shear. Using the three-dimensional line-of-sight (LOS) information on galaxies from the DEEP2 data, we calculate the convergence and shear contributions, assuming singular isothermal sphere halos truncated at 200 h-1 kpc. These are also compared against three-dimensional local-density estimates. We find that even strong lenses in demonstrably underdense local environments may be considerably affected by LOS contributions, which in turn, may be underestimates of the effect of large scale structure.
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