English

PSR J2234+0611: A new laboratory for stellar evolution

High Energy Astrophysical Phenomena 2019-01-16 v2

Abstract

We report timing results for PSR J2234+0611, a 3.6-ms pulsar in a 32-day, eccentric (e = 0.13) orbit with a helium white dwarf companion discovered as part of the Arecibo Observatory 327 MHz drift scan survey. The precise timing and the eccentric nature of the orbit allow precise measurements of an unusual number of parameters: a) a precise proper motion of 27.10(3) mas/yr and a parallax of 1.05(4) mas resulting in a pulsar distance of 0.95(4) kpc; this allows a precise estimate of the transverse velocity, 123(5) km/s. Together with previously published spectroscopic measurements of the systemic radial velocity, this allows a full 3-D determination of the system's velocity; b) precise measurements of the rate of advance of periastron, which after subtraction of the contribution of the proper motion yields a total system mass of 1.65180.0035+0.00331.6518^{+0.0033}_{-0.0035} solar masses; c) a Shapiro delay measurement, h_3 = 82±1482 \pm 14 ns despite the orbital inclination not being near 90 deg; combined with the measurement of the total mass, this yields a pulsar mass of 1.3530.017+0.0141.353^{+0.014}_{-0.017} solar masses and a companion mass of 0.2980.012+0.0150.298^{+0.015}_{-0.012} solar masses; d) we measure precisely the secular variation of the projected semi-major axis and detect significant annual orbital parallax; together these allow a determination of the full 3-D orbital geometry, including an unambiguous orbital inclination (i = 138.72.2+2.5138.7^{+2.5}_{-2.2} deg) and a position angle for the line of nodes (Omega = 444+544^{+5}_{-4} deg). We discuss the component masses to investigate hypotheses previously advanced to explain the origin of eccentric MSPs. The unprecedented determination of the full 3-D position, motion and orbital orientation of the system, plus the precisely measured pulsar and WD mass and the latter's optical detection make this system an unique test of our understanding of white dwarfs and their atmospheres.

Keywords

Cite

@article{arxiv.1809.05064,
  title  = {PSR J2234+0611: A new laboratory for stellar evolution},
  author = {K. Stovall and P. C. C. Freire and J. Antoniadis and M. Bagchi and J. S. Deneva and N. Garver-Daniels and J. G. Martinez and M. A. McLaughlin and Z. Arzoumanian and H. Blumer and P. R. Brook and H. T. Cromartie and P. B. Demorest and M. E. Decesar and T. Dolch and J. A. Ellis and R. D. Ferdman and E. C. Ferrara and E. Fonseca and P. A. Gentile and M. L. Jones and M. T. Lam and D. R. Lorimer and R. S. Lynch and C. Ng and D. J. Nice and T. T. Pennucci and S. M. Ransom and R. Spiewak and I. H. Stairs and J. K. Swiggum and S. J. Vigeland and W. W. Zhu},
  journal= {arXiv preprint arXiv:1809.05064},
  year   = {2019}
}

Comments

16 pages, 5 figures, accepted by ApJ

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