4.7 Article

Birth of the ELMs: a ZTF survey for evolved cataclysmic variables turning into extremely low-mass white dwarfs

期刊

出版社

OXFORD UNIV PRESS
DOI: 10.1093/mnras/stab2583

关键词

binaries: close; binaries: spectroscopic; novae, cataclysmic variables; white dwarfs

资金

  1. National Science Foundation [AST-1440341]
  2. Caltech
  3. IPAC
  4. Weizmann Institute for Science
  5. OskarKlein Centre at Stockholm University
  6. University of Maryland
  7. University of Washington
  8. Deutsches Elektronen-Synchrotron and Humboldt University
  9. Los Alamos National Laboratories
  10. TANGO Consortium of Taiwan
  11. University of Wisconsin at Milwaukee
  12. Lawrence Berkeley National Laboratories

向作者/读者索取更多资源

A systematic survey identified 51 mass-transferring and recently detached cataclysmic variables with evolved secondaries, potentially progenitors of extremely low mass white dwarfs, AM CVn systems, and detached ultracompact binaries. Most found secondaries are hotter, with those above 7000 K being in a detached state, while those below 7000 K are still mass-transferring. This discovery triples the known evolved CV population and presents opportunities for enhancing understanding of compact binary populations.
We present a systematic survey for mass-transferring and recently detached cataclysmic variables (CVs) with evolved secondaries, which are progenitors of extremely low mass white dwarfs (ELM WDs), AM CVn systems, and detached ultracompact binaries. We select targets below the main sequence in the Gaia colour-magnitude diagram with ZTF light curves showing large-amplitude ellipsoidal variability and orbital period P-orb < 6 h. This yields 51 candidates brighter than G = 18, of which we have obtained many-epoch spectra for 21. We confirm all 21 to be completely or nearly Roche lobe filling close binaries. Thirteen show evidence of ongoing mass transfer, which has likely just ceased in the other eight. Most of the secondaries are hotter than any previously known CV donors, with temperatures 4700 < T-eff/K < 8000. Remarkably, all secondaries with T-eff greater than or similar to 7000 K appear to be detached, while all cooler secondaries are still mass-transferring. This transition likely marks the temperature where magnetic braking becomes inefficient due to loss of the donor's convective envelope. Most of the proto-WD secondaries have masses near 0.15 M-circle dot; their companions have masses near 0.8 M-circle dot. We infer a space density of similar to 60 kpc(-3), roughly 80 times lower than that of normal CVs and three times lower than that of ELM WDs. The implied Galactic birth rate, R similar to 60 Myr(-1), is half that of AM CVn binaries. Most systems are well-described by MESA models for CVs in which mass transfer begins only as the donor leaves the main sequence. All are predicted to reach minimum periods 5 less than or similar to P-ord min(-1) less than or similar to 30 within a Hubble time, where they will become AM CVn binaries or merge. This sample triples the known evolved CV population and offers broad opportunities for improving understanding of the compact binary population.

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