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Complete and Simultaneous Spectral Observations of the Black Hole X-Ray Nova XTE J1118+480

机译:黑洞X射线Nova XTE J1118 + 480的完整同时光谱观察

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The X-ray nova XTE J1118+480 suffers minimal extinction (b = 62°) and therefore represents an outstanding opportunity for multiwavelength studies. Hynes et al. conducted the first such study, which was centered on 2000 April 8 using UKIRT, EUVE, HST, and RXTE. On 2000 April 18, the Chandra X-Ray Observatory obtained data coincident with a second set of observations using all of these same observatories. A 30 ks grating observation using Chandra yielded a spectrum with high resolution and sensitivity covering the range 0.24-7 keV. Our near-simultaneous observations cover ≈80% of the electromagnetic spectrum from the infrared to hard X-rays. The UV/X-ray spectrum of XTE J1118+480 consists of two principal components. The first of these is an ≈24 eV thermal component that is caused by an accretion disk with a large inner disk radius: 35R Schw. The second is a quasi power-law component that was recorded with complete spectral coverage from 0.4 to 160 keV. A model for this two-component spectrum is presented in a companion paper by Esin et al.
机译:X射线新星XTE J1118 + 480的消光程度极小(b = 62°),因此代表了进行多波长研究的绝佳机会。 Hynes等。进行了首次此类研究,该研究以UKIRT,EUVE,HST和RXTE为中心于2000年4月8日进行。 2000年4月18日,钱德拉X射线观测站获得了与使用所有这些相同观测站进行的第二组观测值一致的数据。使用钱德拉(Chandra)进行的30 ks光栅观察得到了具有0.24-7 keV范围的高分辨率和灵敏度的光谱。我们几乎同时进行的观测涵盖了从红外到硬X射线的约80%的电磁频谱。 XTE J1118 + 480的UV / X射线光谱由两个主要成分组成。其中第一个是≈24eV的热分量,这是由内盘半径较大的吸积盘引起的:35R Schw。第二个是准功率定律分量,记录的功率范围为0.4至160 keV。 Esin等人在随附的论文中介绍了针对这两种成分的光谱的模型。
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