English

A millisecond pulsar candidate in a 21-hr orbit: 3FGL J0212.1+5320

High Energy Astrophysical Phenomena 2017-01-11 v2

Abstract

We present the discovery of a variable optical counterpart to the unidentified gamma-ray source 3FGL J0212.1+5320, and argue this is a new compact binary millisecond pulsar (MSP) candidate. We show 3FGL J0212.1+5320 hosts a semi-detached binary with a 0.86955±\pm0.00015 d orbital period and a F6-type companion star at an estimated distance of D=1.1±\pm0.2 kpc, with a radial velocity curve semi-amplitude K2_2=214.1±\pm5.0 km s1^{-1} and a projected rotational velocity of Vsin(i)=73.2±\pm1.6 km s1^{-1}. We find a hard X-ray source at the same location with a 0.5-10 keV luminosity LX_\mathrm{X}=2.6×\times1032^{32} (D/1.1 kpc)2^2 erg s1^{-1}, which strengthens the MSP identification. Our results imply a mass ratio q=M2_2/M1_1=0.260.03+0.02^{+0.02}_{-0.03} if the companion star fills its Roche lobe, and q\gtrsim0.26 in any case. This classifies 3FGL J0212.1+5320 as a "redback" binary MSP; if its MSP nature is confirmed, this will be the brightest compact binary MSP in the optical band (r'\simeq14.3 mag) and will have the longest orbital period among Galactic field systems (nearly 21 hr). Based on the light curve peak-to-peak amplitude (Δ\Deltar=0.19 mag), we further suggest that the orbital inclination is high and the putative pulsar mass is close to canonical (M1_1\simeq1.3-1.6 M_\odot). Finally, we discuss the lack of heating signatures and asymmetric optical light curves in the context of other redback MSPs.

Keywords

Cite

@article{arxiv.1609.02232,
  title  = {A millisecond pulsar candidate in a 21-hr orbit: 3FGL J0212.1+5320},
  author = {Manuel Linares and Paulo Miles-Páez and Pablo Rodríguez-Gil and Tariq Shahbaz and Jorge Casares and Cecilia Fariña and Raine Karjalainen},
  journal= {arXiv preprint arXiv:1609.02232},
  year   = {2017}
}

Comments

Accepted for publication in MNRAS; 9 pages, 8 figures, minor changes after referee suggestions