New VLBI Constraints for 0957+561 Lens Models
Deborah Haarsma, Joseph Leh'ar, Rennan Barkana
Abstract
Time-delay measurements of 0957+561 based on radio monitoring now agree with optical monitoring. Recent models incorporate many recent observations, but the systematic uncertainties in the models still dominate the uncertainty in the cosmological results. VLBI observations of the milli-arcsec jet structure have provided the most important set of modeling constraints. We present new observations of this structure, made at 18 cm with the Very Long Baseline Array, the Very Large Array, and the Green Bank 140 ft. telescope. Compared to the data set of Garrett et al. (1994), ours has a similar theoretical noise level (20 microJy), but nearly twice as many baselines (66 compared to 36) and more uniform coverage of the UV plane. Our initial maps confirm the basic jet structures seen by Garrett et al., with comparable RMS noise (60-80 microJy), and are in reasonable agreement with the jet structure model of Barkana et al. (1999). The maps also hint at a new compact component leaving the core, and a previously undetected diffuse component at the end of the jet. Further refinements in fringe-fitting, mapping, and self-calibration should yield significantly lower RMS noise (closer to the theoretical level). We will use a modified form of the CalTech VLBI Modelfit program (written by Barkana et al. 1999) to determine the magnification matrix between the images. The refined magnification matrix should provide stronger constraints on the lens model, and thus reduce the uncertainty in the cosmological results.
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