A New Method for Measuring Extragalactic Distances
arXiv:1403.1693 · doi:10.1088/2041-8205/784/1/L11
Abstract
We have pioneered a new method for the measurement of extragalactic distances. This method uses the time-lag between variations in the short wavelength and long wavelength light from an active galactic nucleus (AGN), based on a quantitative physical model of dust reverberation that relates the time-lag to the absolute luminosity of the AGN. We use the large homogeneous data set from intensive monitoring observations in optical and near-infrared wavelength bands with the dedicated 2-m MAGNUM telescope to obtain the distances to 17 AGNs in the redshift range z=0.0024 to z=0.0353. These distance measurements are compared with distances measured using Cepheid variable stars, and are used to infer that H_0= 73 +- 3 (random) km/s/Mpc. The systematic error in H_0 is examined, and the uncertainty in the size distribution of dust grains is the largest source of the systematic error, which is much reduced for a sample of AGNs for which their parameter values in the model of dust reverberation are individually measured. This AGN time-lag method can be used beyond 30 Mpc, the farthest distance reached by extragalactic Cepheids, and can be extended to high-redshift quasi-stellar objects.
5 pages, 2 figures, accepted for publication in ApJ Letter
References in corpus (8)
- Testing thermal reprocessing in AGN accretion discs
- The innermost region of AGN tori: implications from the HST/NICMOS Type 1 point sources and near-IR reverberation
- Mean Spectral Energy Distributions and Bolometric Corrections for Luminous Quasars
- The characteristic blue spectra of accretion disks in quasars as uncovered in the infrared
- The UV Continuum of Quasars: Models and SDSS Spectral Slopes
- Variation of Inner Radius of Dust Torus in NGC4151
- Multiple Regression Analysis of the Variable Component in the Near-Infrared Region for Type 1 AGN MCG+08-11-011
- First Detection of Near-Infrared Intraday Variations in the Seyfert 1 Nucleus NGC4395
Cited by in corpus (7)
- Supermassive Black Holes with High Accretion Rates in Active Galactic Nuclei. IV. H Time Lags and Implications for Super-Eddington Accretion
- Supermassive black holes with high accretion rates in active galactic nuclei: II. the most luminous standard candles in the Universe
- A dust-parallax distance of 19 megaparsecs to the supermassive black hole in NGC 4151
- Coronal-Line Forest AGN: the best view of the inner edge of the AGN torus?
- On the Scatter in the Radius - Luminosity Relationship for Active Galactic Nuclei
- SALT long-slit spectroscopy of CTS C30.10: two-component Mg II line
- Unbiased constraints on the clumpiness of universe from standard candles