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首页> 外文期刊>Astronomy and astrophysics >Multiwavelength study of the fast rotating supergiant high-mass X-ray binary IGR J16465?4507
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Multiwavelength study of the fast rotating supergiant high-mass X-ray binary IGR J16465?4507

机译:快速旋转超巨质量X射线二进制IGR J16465?4507的多波长研究

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Context. Since its launch, the X-ray and γ -ray observatory INTEGRAL satellite has revealed a new class of high-mass X-ray binaries (HMXB) displaying fast flares and hosting supergiant companion stars. Optical and infrared (OIR) observations in a multi-wavelength context are essential to understand the nature and evolution of these newly discovered celestial objects. Aims. The goal of this multiwavelength study (from ultraviolet to infrared) is to characterise the properties of IGR J16465 ? 4507, to confirm its HMXB nature and that it hosts a supergiant star. Methods. We analysed all OIR, photometric and spectroscopic observations taken on this source, carried out at ESO facilities. Results. Using spectroscopic data, we constrained the spectral type of the companion star between B0.5 and B1?Ib, settling the debate on the true nature of this source. We measured a high rotation velocity of v = 320 ± 8km s~(-1) from fitting absorption and emission lines in a stellar spectral model. We then built a spectral energy distribution from photometric observations to evaluate the origin of the different components radiating at each energy range. Conclusions. We finally show that, having accurately determined the spectral type of the early-B supergiant in IGR J16465 ? 4507, we firmly support its classification as an intermediate supergiant fast X-ray transient (SFXT).
机译:上下文。自发射以来,X射线和γ射线天文台INTEGRAL卫星已经揭示了一种新型的高质量X射线双星(HMXB),具有快速的耀斑和超大的伴星。在多波长范围内进行光学和红外(OIR)观测对于了解这些新发现的天体的性质和演化至关重要。目的这项多波长研究(从紫外线到红外)的目的是表征IGR J16465的特性。 4507,以确认其HMXB性质并承载一颗超巨星。方法。我们分析了在ESO设施上对此源进行的所有OIR,光度学和光谱学观察。结果。利用光谱数据,我们将伴星的光谱类型限制在B0.5和B1?Ib之间,从而解决了有关该源真正性质的争论。我们通过将吸收和发射谱线拟合到恒星光谱模型中,测量到了高旋转速度v = 320±8km s〜(-1)。然后,我们根据光度学观测结果建立了光谱能量分布,以评估在每个能量范围内辐射的不同成分的起源。结论。我们最终证明,在IGR J16465中准确确定了早期B超巨星的光谱类型后, 4507,我们坚决支持将其分类为中间超大型快速X射线瞬变(SFXT)。

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