English

Probable Dormant Neutron Star in a Short-Period Binary System

Solar and Stellar Astrophysics 2022-10-26 v2 High Energy Astrophysical Phenomena

Abstract

We have identified 2XMM J125556.57+565846.4, at a distance of 600 pc, as a binary system consisting of a normal star and a probable dormant neutron star. Optical spectra exhibit a slightly evolved F-type single star, displaying periodic Doppler shifts with a 2.76-day Keplerian circular orbit, with no indication of light from a secondary component. Optical and UV photometry reveal ellipsoidal variations with half the orbital period, due to the tidal deformation of the F star. The mass of the unseen companion is constrained to the range 1.11.1--2.1M2.1\,M_{\odot} at 3σ3\sigma confidence, with the median of the mass distribution at 1.4M1.4\,M_{\odot}, the typical mass of known neutron stars. A main-sequence star cannot masquerade as the dark companion. The distribution of possible companion masses still allows for the possibility of a very massive white dwarf. The companion itself could also be a close pair consisting of a white dwarf and an M star, or two white dwarfs, although the binary evolution that would lead to such a close triple system is unlikely. Similar ambiguities regarding the certain identification of a dormant neutron star are bound to affect most future discoveries of this type of non-interacting system. If the system indeed contains a dormant neutron star, it will become, in the future, a bright X-ray source and afterwards might even host a millisecond pulsar.

Keywords

Cite

@article{arxiv.2206.11270,
  title  = {Probable Dormant Neutron Star in a Short-Period Binary System},
  author = {Tsevi Mazeh and Simchon Faigler and Dolev Bashi and Sahar Shahaf and Niv Davidson and Matthew Green and Roy Gomel and Dan Maoz and Amitay Sussholz and Subo Dong and Haotong Zhang and Jifeng Liu and Song Wang and Ali Luo and Zheng Zheng and Na'ama Hallakoun and Volker Perdelwitz and David W. Latham and Ignasi Ribas and David Baroch and Juan Carlos Morales and Evangelos Nagel and Nuno C. Santos and David R. Ciardi and Jessie L. Christiansen and Michael B. Lund and Joshua N. Winn},
  journal= {arXiv preprint arXiv:2206.11270},
  year   = {2022}
}

Comments

35 pages, 21 figures. accepted for publication in MNRAS

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