SIMBAD references

2000ApJ...535..692K - Astrophys. J., 535, 692-705 (2000/June-1)

The infrared Einstein ring in the gravitational lens MG J1131+0456 and the death of the dusty lens hypothesis.

KOCHANEK C.S., FALCO E.E., IMPEY C.D., LEHAR J., McLEOD B.A., RIX H.-W., KEETON C.R., MUNOZ J.A. and PENG C.Y.

Abstract (from CDS):

We have obtained and modeled NICMOS images of the Einstein ring lens system MG J1131+0456, which show that its lens galaxy is an H=18.6 mag, transparent, early-type galaxy at a redshift of zl≃0.84; it has a major axis effective radius Re=0".7±0".1, projected axis ratio b/a=0.6±0.1, and major axis P.A.=55°±9°. The lens is the brightest member of a group of at least seven galaxies with similar R-I and I-H colors, and the two closest group members produce sufficient tidal perturbations to explain the shape of the ring. The host galaxy of the MG J1131+0456 source is a zs≳2 extremely red object (ERO) that is lensed into optical and infrared rings of dramatically different morphologies. These differences imply a strongly wavelength-dependent source morphology that could be explained by embedding the host in a larger, dusty disk. At 1.6 µm (H), the ring is spectacularly luminous, with a total observed flux of H=17.4 mag and a demagnified flux of 19.3 mag, corresponding to a 1-2 L* galaxy at the probable source redshift of zs≳2. Thus, it is primarily the stellar emission of the radio source host galaxy that produces the overall colors of two of the reddest radio lenses, MG J1131+0456 and JVAS B1938+666, aided by the suppression of optical active galactic nucleus emission by dust in the source galaxy. The dusty lens hypothesis – that many massive early-type galaxies with 0≲zl≲1 have large, uniform dust opacities – is ruled out.

Abstract Copyright:

Journal keyword(s): ISM: Dust, Extinction - galaxies: individual (MG J1131+0456) - Galaxies: Photometry - Cosmology: Gravitational Lensing - Infrared: Galaxies

Nomenclature: Table 1: [KFI2000] G N=1, [KFI2000] GNN (Nos G1-G42), [KFI2000] SN (Nos S1-S3).

Status at CDS : All or part of tables of objects will not be ingested in SIMBAD.

Simbad objects: 32

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