NICMOS images of JVAS/CLASS gravitational lens systems

被引:43
作者
Jackson, N [1 ]
Xanthopoulos, E [1 ]
Browne, IWA [1 ]
机构
[1] Univ Manchester, Nuffield Radio Astron Labs, Macclesfield SK11 9DL, Cheshire, England
关键词
galaxies : active; galaxies : individual : B0218+357; galaxies : individual : B0712+472; galaxies : individual : B1030+074; galaxies : individual : B1600+434; gravitational lensing;
D O I
10.1046/j.1365-8711.2000.03115.x
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
We present Hubble Space Telescope (HST) infrared images of four gravitational lens systems from the JVAS/CLASS gravitational lens survey and compare the new infrared HST pictures with previously published WFPC2 HST optical images and radio maps. Apart from the wealth of information that we get from the flux ratios and accurate positions and separations of the components of the lens systems, which we can use as inputs for better constraints on the lens models, we are able to discriminate between reddening and optical/radio microlensing as the possible cause of differences observed in the flux ratios of the components across the three wavelength bands. Substantial reddening has been known to be present in the lens system B1600+434 and has been further confirmed by the present infrared data. In the two systems B0712+472 and B1030+074 microlensing has been pinpointed as the main cause of the flux ratio discrepancy both in the optical/infrared and in the radio, the radio possibly caused by the substructure revealed in the lensing galaxies. In B0218+357, however, the results are still not conclusive. If we are actually seeing the two 'true' components of the lens system then the flux ratio differences are attributed to a combination of microlensing and reddening or are alternatively the result of some variability in at least one of the images. Otherwise the second 'true' component of B0218+357 may be completely absorbed by a molecular cloud and the anomalous flux density ratios and large difference in separation between the optical/infrared and radio that we see can be explained by emission either from a foreground object or from part of the lensing galaxy.
引用
收藏
页码:389 / 396
页数:8
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