Measuring Extinction Curves of Lensing Galaxies
arXiv:astro-ph/0501489 · doi:10.1086/429125
Abstract
We critique the method of constructing extinction curves of lensing galaxies using multiply imaged QSOs. If one of the two QSO images is lightly reddened or if the dust along both sightlines has the same properties then the method works well and produces an extinction curve for the lensing galaxy. These cases are likely rare and hard to confirm. However, if the dust along each sightline has different properties then the resulting curve is no longer a measurement of extinction. Instead, it is a measurement of the difference between two extinction curves. This "lens difference curve'' does contain information about the dust properties, but extracting a meaningful extinction curve is not possible without additional, currently unknown information. As a quantitative example, we show that the combination of two Cardelli, Clayton, & Mathis (CCM) type extinction curves having different values of R(V) will produce a CCM extinction curve with a value of R(V) which is dependent on the individual R(V) values and the ratio of V band extinctions. The resulting lens difference curve is not an average of the dust along the two sightlines. We find that lens difference curves with any value of R(V), even negative values, can be produced by a combination of two reddened sightlines with different CCM extinction curves with R(V) values consistent with Milky Way dust (2.1 < R(V) < 5.6). This may explain extreme values of R(V) inferred by this method in previous studies. But lens difference curves with more normal values of R(V) are just as likely to be composed of two dust extinction curves with R(V) values different than that of the lens difference curve. While it is not possible to determine the individual extinction curves making up a lens difference curve, there is information about a galaxy's dust contained in the lens difference curves.
15 pages, 4 figues, ApJ in press
References in corpus (5)
- A Quantitative Comparison of SMC, LMC, and Milky Way UV to NIR Extinction Curves
- Ultraviolet Extinction Properties in the Milky Way
- Dust Grain-Size Distributions From MRN to MEM
- Disentangling microlensing and differential extinction in the double QSO HE0512-3329
- The extinction law in high redshift galaxies
Cited by in corpus (13)
- Improved Distances to Type Ia Supernovae with Multicolor Light Curve Shapes: MLCS2k2
- Average Extinction Curves and Relative Abundances for QSO Absorption Line Systems at 1 <= z_abs < 2
- Testing Bekenstein's Relativistic MOND gravity with Lensing Data
- Photometry of the Type Ia Supernovae 1999cc, 1999cl, and 2000cf
- Extinction Curves of Lensing Galaxies out to z=1
- A Study of Gravitational Lens Chromaticity with the Hubble Space Telescope
- Origin of Chromatic Features in Multiple Quasars -Variability, Dust, or Microlensing -
- An Extremely Bright Echo Associated With SN 2002hh
- Probing The Dust-To-Gas Ratio of z > 0 Galaxies Through Gravitational Lenses
- Extinction properties of lensing galaxies
- Interstellar Silicate Dust in the z=0.89 Absorber Towards PKS 1830-211: Crystalline Silicates at High Redshift?
- Looking at quasars through galaxies
- Dust in the Local Group