A Test for Large-Scale Systematic Errors in Maps of Galactic Reddening
arXiv:astro-ph/9812367 · doi:10.1086/316299
Abstract
Accurate maps of Galactic reddening are important for a number of applications, such as mapping the peculiar velocity field in the nearby Universe. Of particular concern are systematic errors which vary slowly as a function of position on the sky, as these would induce spurious bulk flow. We have compared the reddenings of Burstein & Heiles (BH) and those of Schlegel, Finkbeiner & Davis (SFD) to independent estimates of the reddening, for Galactic latitudes |b| > 10. Our primary source of Galactic reddening estimates comes from comparing the difference between the observed B-V colors of early-type galaxies, and the predicted B-V color determined from the B-V--Mg_2 relation. We have fitted a dipole to the residuals in order to look for large-scale systematic deviations. There is marginal evidence for a dipolar residual in the comparison between the SFD maps and the observed early-type galaxy reddenings. If this is due to an error in the SFD maps, then it can be corrected with a small (13%) multiplicative dipole term. We argue, however, that this difference is more likely to be due to a small (0.01 mag.) systematic error in the measured B-V colors of the early-type galaxies. This interpretation is supported by a smaller, independent data set (globular cluster and RR Lyrae stars), which yields a result inconsistent with the early-type galaxy residual dipole. BH reddenings are found to have no significant systematic residuals, apart from the known problem in the region 230 < l < 310, -20 < b < 20.
8 pages, PASP, in press (Jan 1999)
References in corpus (4)
- Maps of Dust IR Emission for Use in Estimation of Reddening and CMBR Foregrounds
- Old Stellar Populations. VI. Absorption-Line Spectra of Galaxy Nuclei and Globular Clusters
- A Large-Scale Bulk Flow of Galaxy Clusters
- Galaxy clusters in the Perseus-Pisces region - I. Spectroscopic and photometric data for early-type galaxies
Cited by in corpus (14)
- Consistently Large Cosmic Flows on Scales of 100 Mpc/h: a Challenge for the Standard LCDM Cosmology
- Streaming motions of galaxy clusters within 12000 km/s - V. The peculiar velocity field
- Nearby Optical Galaxies: Selection of the Sample and Identification of Groups
- A Synthesis of Data from Fundamental Plane and Surface Brightness Fluctuation Surveys
- Early-type Galaxy Distances from the Fundamental Plane and Surface Brightness Fluctuations
- The peculiar velocity field: constraining the tilt of the Universe
- Cosmic bulk flows on 50 {h}^{-1}Mpc scales: A Bayesian hyper-parameter method and multishells likelihood analysis
- Permitted Oxygen Abundances and the Temperature Scale of Metal-Poor Turn-Off Stars
- An estimation of local bulk flow with the maximum-likelihood method
- On the calibration of the COBE/IRAS dust emission reddening maps
- The Extinction and Distance of Maffei 1
- A comparison of the galaxy peculiar velocity field with the PSCz gravity field-- A Bayesian hyper-parameter method
- Line-of-Sight Reddening Predictions: Zero Points, Accuracies, the Interstellar Medium, and the Stellar Populations of Elliptical Galaxies
- Spiral galaxy distance indicators based on near-infrared photometry