论文标题

短周期二进制系统中可能休眠的中子星

Probable Dormant Neutron Star in a Short-Period Binary System

论文作者

Mazeh, Tsevi, Faigler, Simchon, Bashi, Dolev, Shahaf, Sahar, Davidson, Niv, Green, Matthew, Gomel, Roy, Maoz, Dan, Sussholz, Amitay, Dong, Subo, Zhang, Haotong, Liu, Jifeng, Wang, Song, Luo, Ali, Zheng, Zheng, Hallakoun, Na'ama, Perdelwitz, Volker, Latham, David W., Ribas, Ignasi, Baroch, David, Morales, Juan Carlos, Nagel, Evangelos, Santos, Nuno C., Ciardi, David R., Christiansen, Jessie L., Lund, Michael B., Winn, Joshua N.

论文摘要

我们已经将2xmm J12556.57+565846.4鉴定为600 pc的距离,是由正常恒星和可能的休眠中子星组成的二进制系统。光谱表现出略微演变的F型单星,显示了2.76天的开普勒圆形轨道的周期性多普勒移位,没有次要组件的光迹象。光学和紫外线光度法揭示了由于F星的潮汐变形,椭圆形变化的轨道周期为一半。看不见的伴侣的质量被限制为$ 1.1 $ - $ 2.1 \,m _ {\ odot} $以$3σ$信心,质量分布的中位数为$ 1.4 \,m _ {\ odot} $,典型的已知中子星的典型质量。主序明星不能伪装成黑暗的同伴。可能的伴侣质量的分布仍然使可能具有非常巨大的白色矮人。同伴本身也可能是一对近距离,由白色矮人和一个M星或两个白色矮人组成,尽管不太可能导致如此紧密的三重系统的二进制进化。关于休眠中子恒星的一定鉴定,类似的歧义势必会影响这种非相互作用系统的大多数未来发现。如果系统确实包含休眠的中子恒星,将来它将成为一个明亮的X射线源,然后甚至可能主持一个毫秒的脉冲星。

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 $1.1$--$2.1\,M_{\odot}$ at $3σ$ confidence, with the median of the mass distribution at $1.4\,M_{\odot}$, 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.

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