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The Double-White-Dwarf Merger Rate from ZTF

Astrophysics of Galaxies 2024-12-10 v1

Abstract

Using the Zwicky Transient Facility (ZTF), Burdge et al. (2020) discovered systems of eclipsing double white dwarfs (EDWDs) having orbital periods <1 hr. From the properties of 3 of the discovered systems, I estimate a merger rate of DWDs, per WD in the Galaxy, of Rmerge,WD8×1012R_{\rm merge, WD}\approx8\times 10^{-12}yr1^{-1}, or a rate per unit stellar mass in the Galaxy, of Rmerge,M4.8×1013R_{\rm merge, M*}\approx4.8\times 10^{-13}yr1^{-1}M1_\odot^{-1}.This likely somewhat underestimates the rate, because of several known effects that work against EDWD detection in ZTF. The derived merger rate is within the uncertainty range, Rmerge,M=(4.65.8)×1013R_{\rm merge, M*} =(4.6-5.8)\times 10^{-13}yr1^{-1}M1_\odot^{-1}, measured independently by Maoz et al. (2018) based on two samples of DWDs discovered via radial-velocity variations. Based on the expected period distribution of DWDs and their detectability, of order 100 additional eclipsing DWDs with periods >1 hr are discoverable in ZTF, with potential to significantly improve the merger-rate's measurement precision.

Keywords

Cite

@article{arxiv.2412.06019,
  title  = {The Double-White-Dwarf Merger Rate from ZTF},
  author = {Dan Maoz},
  journal= {arXiv preprint arXiv:2412.06019},
  year   = {2024}
}

Comments

3 pages, comments welcome

R2 v1 2026-06-28T20:27:07.919Z