Radio, optical and infrared observations of CLASS B0128+437
arXiv:astro-ph/0402128 · doi:10.1111/j.1365-2966.2004.07701.x
Abstract
We present new observations of the gravitational lens system CLASS B0128+437. HST observations detect a very faint, extended object in I-band with no emission from the lensed images visible; no detection at all is made in V-band. The lens system is detected with much higher signal to noise with UKIRT in K-band, but the resolution is not sufficient to allow the lensed images and the lens galaxy to be separated. A careful astrometric calibration, however, suggests that the peak of the infrared emission corresponds to the two merging images A and B and therefore that the lensed images dominate at infrared wavelengths. The new radio data consist of VLBI radio images at three frequencies, 2.3, 5 and 8.4GHz, made with the VLBA and the 100-m Effelsberg telescope. The lensed source consists of three well-defined sub-components embedded in a more extended jet. Due to the fact that the sub-components have different spectral indices it is possible to determine which part of each image corresponds to the same source sub-component. Our main finding is that one of the images, B, looks very different to the others, there being no obvious division into separate sub-components and the image being apparently both broader and smoother. This is a consequence we believe of scatter-broadening in the ISM of the lensing galaxy. The large number of multiply-imaged source sub-components also provide an abundance of modelling constraints and we have attempted to fit an SIE+external shear model to the data, as well as utilising the novel method of Evans & Witt. It proves difficult in both cases, however, to obtain a satisfactory fit which strongly suggests the presence of sub-structure in the mass distribution of the lensing galaxy, perhaps of the kind that is predicted by CDM theories of structure formation.
Accepted for publication in MNRAS. 13 pages, 8 figures. Full resolution versions of Figures 1, 2, 3, 4 and 5 are obtainable from ftp://ftp.jive.nl/pub/biggs/0128_highres.tar.gz
References in corpus (1)
Cited by in corpus (17)
- How well can cold-dark-matter substructures account for the observed radio flux-ratio anomalies?
- High resolution imaging of the anomalous flux-ratio gravitational lens system CLASS B2045+265: Dark or luminous satellites?
- Einstein rings modulated by wavelike dark matter from anomalies in gravitationally lensed images
- Gravitational lenses and lens candidates identified from the COSMOS field
- Strong lensing signatures of luminous structure and substructure in early-type galaxies
- Strong lensing reveals jets in a sub-microJy radio quiet quasar
- Probing motion of fast radio burst sources by timing strongly lensed repeaters
- Free-free absorption in the gravitational lens JVAS B0218+357
- Galaxy-lens determination of : the effect of the ellipse+shear modeling assumption
- Improving efficiency in radio surveys for gravitational lenses
- Substructures in lens galaxies: PG1115+080 and B1555+375, two fold configurations
- Strong Lensing by Subhalos in the Dwarf-Galaxy Mass Range II: Detection Probabilities
- High-resolution imaging with the International LOFAR Telescope: Observations of the gravitational lenses MG 0751+2716 and CLASS B1600+434
- Time Delay Anomalies of Fuzzy Gravitational Lenses
- The radio-loud active nucleus in the "dark lens" galaxy J1218+2953
- Role of the companion lensing galaxy in the CLASS gravitational lens B1152+199
- A Fuzzy Situation Eased: Cold Dark Matter with Multipoles Can Explain The Double Radio Quad Lens HS 0810+2554