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Article
A Bayesian Approach to Deriving Ages of Individual Field White Dwarfs
The Astrophysical Journal
  • Erin M. O'Malley, Siena College; Dartmouth College
  • Ted von Hippel, Embry-Riddle Aeronautical University
  • David A. van Dyk, Imperial College London
Submitting Campus
Daytona Beach
Department
Physical Sciences
Document Type
Article
Publication/Presentation Date
9-30-2013
Abstract/Description

We apply a self-consistent and robust Bayesian statistical approach to determine the ages, distances, and zero-age main sequence (ZAMS) masses of 28 field DA white dwarfs (WDs) with ages of approximately 4–8 Gyr. Our technique requires only quality optical and near-infrared photometry to derive ages with <15% uncertainties, generally with little sensitivity to our choice of modern initial–final mass relation. We find that age, distance, and ZAMS mass are correlated in a manner that is too complex to be captured by traditional error propagation techniques. We further find that the posterior distributions of age are often asymmetric, indicating that the standard approach to deriving WD ages can yield misleading results.

DOI
https://doi.org/10.1088/0004-637X/775/1/1
Publisher
Institute of Physics Publishing, Inc.
Grant or Award Name
NASA Grant NNX11AF34G
Citation Information
Erin M. O'Malley, Ted von Hippel and David A. van Dyk. "A Bayesian Approach to Deriving Ages of Individual Field White Dwarfs" The Astrophysical Journal Vol. 775 Iss. 1 (2013) p. 1 - 11
Available at: http://works.bepress.com/ted-vonhippel/32/