Microlensing of Central Images in Strong Gravitational Lens Systems
arXiv:astro-ph/0507522 · doi:10.1111/j.1365-2966.2007.11695.x
Abstract
We study microlensing of the faint images that form close to the centers of strong gravitational lens galaxies. These central images, which have finally begun to yield to observations, naturally appear in dense stellar fields and may be particularly sensitive to fine granularity in the mass distribution. The microlensing magnification maps for overfocussed (i.e., demagnified) images differ strikingly from those for magnified images. In particular, the familiar "fold" and "cusp" features of maps for magnified images are only present for certain values of the fraction, f, of the surface mass density contained in stars. For central images, the dispersion in microlensing magnifications is generally larger than for normal (minimum and saddle) images, especially when the source is comparable to or larger than the stellar Einstein radius. The dispersion depends in a complicated way on f; this behaviour may hold the key to using microlensing as a probe of the relative densities of stars and dark matter in the cores of distant galaxies. Quantitatively, we predict that the central image C in PMN J1632-0033 has a magnification dispersion of 0.6 magnitudes for Rsrc/Rein <~ 1, or 0.3 mag for Rsrc/Rein = 10. For comparison, the dispersions are 0.5-0.6 mag for image B and 0.05-0.1 mag for image A, if Rsrc/Rein <~ 1; and just 0.1 mag for B and 0.008 mag for A if Rsrc/Rein = 10. (The dispersions can be extrapolated to larger sources sizes as sigma \propto Rsrc^{-1}.) Thus, central images are more susceptible than other lensed images to microlensing and hence good probes for measuring source sizes.
12 pages; accepted in MNRAS; many new magnification maps and significantly expanded analysis of magnification map structure
References in corpus (14)
- Tests for Substructure in Gravitational Lenses
- The Time Delays of Gravitational Lens HE0435-1223: An Early-Type Galaxy With a Rising Rotation Curve
- Size is Everything: Universal Features of Quasar Microlensing with Extended Sources
- Microlensing of the Broad Emission Line Region in the Quadruple Lens SDSS J1004+4112
- The central image of a gravitationally lensed quasar
- Extrinsic Radio Variability of JVAS/CLASS Gravitational Lenses
- Gravitational microlensing of quasar broad line regions at large optical depths
- Qualitative aspects of quasar microlensing with two mass components: magnification patterns and probability distributions
- Microlensing of the Lensed Quasar SDSS0924+0219
- Investigation of the possible third image and mass models of the gravitational lens PMN J1632-0033
- Microlensing of an extended source by a power-law mass distribution
- Microlensing in the double quasar SBS1520+530
- Gravitational Lensing Signatures of Supermassive Black Holes in Future Radio Surveys
- QSO size ratios from multiband monitoring of a microlensing high-magnification event
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- A VLA monitoring study of JVAS B1422+231: investigation of time delays and detection of extrinsic variability
- The Central Component of Gravitational Lens Q0957+561