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首页> 外文期刊>The Astrophysical journal >High-Resolution X-Ray and Ultraviolet Spectroscopy of the Complex Intrinsic Absorption in NGC 4051 with Chandra and the Hubble Space Telescope
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High-Resolution X-Ray and Ultraviolet Spectroscopy of the Complex Intrinsic Absorption in NGC 4051 with Chandra and the Hubble Space Telescope

机译:钱德拉和哈勃太空望远镜对NGC 4051中复杂本征吸收的高分辨率X射线和紫外光谱

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We present the results from simultaneous observations of the narrow-line Seyfert 1 galaxy NGC 4051 with the Chandra High Energy Transmission Grating Spectrometer and the Hubble Space Telescope Space Telescope Imaging Spectrograph. The X-ray grating spectrum reveals absorption and emission lines from hydrogen-like and helium-like ions of O, Ne, Mg, and Si. We resolve two distinct X-ray absorption systems: a high-velocity blueshifted system at -2340 ± 130 km s-1 and a low-velocity blueshifted system at -600 ± 130 km s-1. In the UV spectrum we detect strong absorption, mainly from C IV, N V, and Si IV, that is resolved into as many as nine different intrinsic absorption systems with velocities between -650 and 30 km s-1. Although the low-velocity X-ray absorption is consistent in velocity with many of the UV absorption systems, the high-velocity X-ray absorption seems to have no UV counterpart. In addition to the absorption and emission lines, we also observe rapid X-ray variability and a state of low X-ray flux during the last ≈15 ks of the observation. NGC 4051 has a soft X-ray excess that we fit in both the high and low X-ray flux states. The high-resolution X-ray spectrum directly reveals that the soft excess is not composed of narrow emission lines and that it has significant spectral curvature. A power-law model fails to fit it, while a blackbody produces a nearly acceptable fit. We compare the observed spectral variability with the results of previous studies of NGC 4051.
机译:我们介绍了同时观察到的窄线Seyfert 1星系NGC 4051与钱德拉高能透射光栅光谱仪和哈勃太空望远镜太空望远镜成像光谱仪的结果。 X射线光栅光谱揭示了来自O,Ne,Mg和Si的氢离子和氦离子的吸收和发射线。我们解析了两种不同的X射线吸收系统:-2340±130 km s-1的高速蓝移系统和-600±130 km s-1的低速蓝移系统。在紫外光谱中,我们检测到强吸收,主要是从C IV,N V和Si IV吸收的,该吸收被分解为多达9种不同的固有吸收系统,其速度在-650至30 km s-1之间。尽管低速X射线吸收的速度与许多UV吸收系统的速度一致,但高速X射线吸收似乎没有UV对应物。除了吸收和发射线外,我们还观察到了最后一个≈15ks期间X射线的快速变化性和低X射线通量的状态。 NGC 4051具有柔和的X射线余量,我们可以同时满足高和低X射线通量状态。高分辨率的X射线光谱直接显示出,软过量不是由狭窄的发射线组成,并且具有明显的光谱曲率。幂律模型无法拟合,而黑体产生的拟合值几乎可以接受。我们将观察到的光谱变异性与NGC 4051的先前研究结果进行了比较。

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