论文标题

4U 1812-12的光谱法:通过H II区域看到的超紧凑型X射线二进制

Optical spectroscopy of 4U 1812-12: an ultra-compact X-ray binary seen through an H II region

论文作者

Padilla, M. Armas, Muñoz-Darias, T., Jiménez-Ibarra, F., Fernández-Ontiveros, J. A., Casares, J., Torres, M. A. P., García-Rojas, J., Cúneo, V. A., Degenaar, N.

论文摘要

持续的低亮度中子星X射线二进制二进制4U 1812-12是超紧凑系统稀缺家族的潜在成员。我们用10.4 m gran望远镜加拿大canarias进行了深层光度和光谱光学观察,以研究积聚等离子体的化学组成,这是供体星类别的代理。我们检测到位于Sharpless 54 H II区域郊区背景的微弱的光学对应物(G〜25,R〜23),其特征性的Nebular Lines在X射线二进制频谱上叠加。一旦校正了此功能,实际的源光谱就会缺乏氢光谱特征。特别是,未检测到HALPHA发射线,在等效宽度<1.3 A.氦(He I)线上均未观察到上限(3 sigma),尽管我们的约束不足以正确测试该元素的存在。我们还为来自其他元素(例如C和O)的发射线的存在提供了严格的上限,例如C和O,通常在具有C-O White Dwarfs供体的超紧凑型系统中发现。 The absence of hydrogen features, the persistent nature of the source at low luminosity, as well as the low optical to X-ray flux ratio confirm 4U 1812-12 as a compelling ultra-compact X-ray binary candidate, for which we tentatively propose a He-rich donor based on the optical spectrum and the detection of short thermonuclear X-ray bursts.在此框架中,我们根据光盘不稳定性和进化模型讨论系统的可能轨道时期。

The persistent, low-luminosity neutron star X-ray binary 4U 1812-12 is a potential member of the scarce family of ultra-compact systems. We performed deep photometric and spectroscopic optical observations with the 10.4 m Gran Telescopio Canarias in order to investigate the chemical composition of the accreted plasma, which is a proxy for the donor star class. We detect a faint optical counterpart (g~25, r~23) that is located in the background of the outskirts of the Sharpless 54 H II region, whose characteristic nebular lines superimpose on the X-ray binary spectrum. Once this is corrected for, the actual source spectrum lacks hydrogen spectral features. In particular, the Halpha emission line is not detected, with an upper limit (3 sigma) on the equivalent width of <1.3 A. Helium (He I) lines are neither observed, albeit our constraints are not restrictive enough to properly test the presence of this element. We also provide stringent upper limits on the presence of emission lines from other elements, such as C and O, which are typically found in ultra-compact systems with C-O white dwarfs donors. The absence of hydrogen features, the persistent nature of the source at low luminosity, as well as the low optical to X-ray flux ratio confirm 4U 1812-12 as a compelling ultra-compact X-ray binary candidate, for which we tentatively propose a He-rich donor based on the optical spectrum and the detection of short thermonuclear X-ray bursts. In this framework, we discuss the possible orbital period of the system according to disc instability and evolutionary models.

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