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Accretion disk spectra of super-luminal jet sources and ultra-luminous compact X-ray sources in nearby spiral galaxies

机译:邻近旋涡星系中超发光射流源和超发光紧凑型X射线源的吸积盘光谱

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摘要

The Ultra-luminous Compact X-ray Sources (ULXs)in nearby spiral galaxies and the Galactic super-luminaljet sources sharethe common spectral characteristic that they haveextremely high disk temperatures which cannot be explainedin the framework of the standard accretion disk modelin the Schwarzschild metric. We have calculated an extreme Kerr disk model to examine if the Kerr disk model can instead explain the observed `too hot' accretion disk spectra.We found that the Kerr disk spectrum becomes significantly hardercompared to the Schwarzschild disk only when the disk is highlyinclined.For super-luminal jet sources, which are known to beinclined systems, the Kerr disk model may thuswork if we choose proper values for the black hole angular momentum. For the ULXs, however, the Kerr disk interpretation will be problematic,as is is highly unlikely that their accretion disks are preferentiallyinclined.
机译:附近螺旋星系中的超发光紧凑型X射线源(ULXs)和银河系超光源喷射源具有共同的光谱特征,即它们具有极高的磁盘温度,这在Schwarzschild度量标准的吸积盘模型的框架中无法解释。我们计算了一个极端的Kerr磁盘模型,以检查Kerr磁盘模型是否可以代替解释观察到的``太热''的吸积盘光谱。我们发现,仅当磁盘高度倾斜时,Kerr磁盘光谱才比Schwarzschild磁盘明显困难。如果使用超光速射流(倾斜系统),那么如果我们为黑洞角动量选择合适的值,那么克尔圆盘模型可能会起作用。但是,对于ULX,Kerr盘的解释将是有问题的,因为不太可能优先倾斜其吸积盘。

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