4.7 Article

CONSTRAINTS ON THE INITIAL-FINAL MASS RELATION FROM WIDE DOUBLE WHITE DWARFS

期刊

ASTROPHYSICAL JOURNAL
卷 815, 期 1, 页码 -

出版社

IOP PUBLISHING LTD
DOI: 10.1088/0004-637X/815/1/63

关键词

binaries: general; binaries: visual; stars: evolution; white dwarfs

资金

  1. NSF
  2. NASA [AST-1255419, AST-1312678, NNX14AF65G]
  3. NIH [1G20RR030893-01]
  4. New York State/the Empire State Development's Division of Science, Technology and Innovation (NYSTAR) [C090171]
  5. Alfred P. Sloan Foundation
  6. National Science Foundation
  7. U.S. Department of Energy Office of Science
  8. University of Arizona
  9. Brazilian Participation Group
  10. Brookhaven National Laboratory
  11. Carnegie Mellon University
  12. University of Florida
  13. French Participation Group
  14. German Participation Group
  15. Harvard University
  16. Instituto de Astrofisica de Canarias
  17. Michigan State/Notre Dame/JINA Participation Group
  18. Johns Hopkins University
  19. Lawrence Berkeley National Laboratory
  20. Max Planck Institute for Astrophysics
  21. Max Planck Institute for Extraterrestrial Physics
  22. New Mexico State University
  23. New York University
  24. Ohio State University
  25. Pennsylvania State University
  26. University of Portsmouth
  27. Princeton University
  28. Spanish Participation Group
  29. University of Tokyo
  30. University of Utah
  31. Vanderbilt University
  32. University of Virginia
  33. University of Washington
  34. Yale University
  35. University of Cambridge
  36. Direct For Mathematical & Physical Scien
  37. Division Of Astronomical Sciences [1153335] Funding Source: National Science Foundation
  38. Direct For Mathematical & Physical Scien
  39. Division Of Astronomical Sciences [1312678] Funding Source: National Science Foundation

向作者/读者索取更多资源

We present observational constraints on the initial-final mass relation (IFMR) using wide double white dwarfs (DWDs). We identify 65 new candidate wide DWDs within the Sloan Digital Sky Survey, bringing the number of candidate wide DWDs to 142. We then engage in a spectroscopic follow-up campaign and collect existing spectra for these objects; using these spectra, we derive masses and cooling ages for 54 hydrogen (DA) WDs in DWDs. We also identify one new DA/DB pair, four candidate DA/DC pairs, four candidate DA/DAH pairs, and one new candidate triple degenerate system. Because wide DWDs are co-eval and evolve independently, the difference in the pre-WD lifetimes should equal the difference in the WD cooling ages. We use this to develop a Bayesian hierarchical framework and construct a likelihood function to determine the probability that any particular IFMR fits a sample of wide DWDs. We then define a parametric model for the IFMR and find the best parameters indicated by our sample of DWDs. We place robust constraints on the IFMR for initial masses of 2-4 M-circle dot. The WD masses produced by our model for stars within this mass range differ from those predicted by semi-empirical fits to open cluster WDs. Within this mass range, where there are few constraining open cluster WDs and disagreements in the cluster ages, wide DWDs may provide more reliable constraints on the IFMR. Expanding this method to the many wide DWDs expected to be discovered by Gaia may transform our understanding of the IFMR.

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