用xmm -牛顿对叶状主导射电大声类星体的x射线研究

L. Dou, W. Yuan
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引用次数: 2

摘要

我们报告了我们的x射线光谱分析的结果,我们的样本涵盖了广泛的射电核心优势参数R,从核心主导到叶主导的对象,使用的数据主要是由xmm -牛顿天文台获得的。我们发现,即使对于以叶为主的物体(平均光子指数类似于1.5),其底层幂律连续体的光谱形状也是平坦的,与以核为主的类星体的光谱形状难以区分。对于以叶为主的物体,根据以前的统一方案,预计喷流的x射线贡献非常小,比观测到的x射线光度低一个数量级以上。假设射电响亮的类星体遵循相同的x射线-紫外/光学光度关系的盘-日冕。我们从光学/紫外连续体中估计了由盘-日冕成分贡献的x射线通量。我们发现,无论是光度还是光谱形状,盘冕x射线发射都不能解释观测到的大部分x射线性质。因此,在以叶为主的类星体中,与普通的射电安静类星体相比,要么是盘冕x射线发射的强度大大增强,光谱形状更平坦(光子指数接近1.5),要么是它们的喷流x射线发射比弱射电核心喷流发射增强得多。如果是后者,我们的结果可能意味着x射线的射流发射比无线电的多普勒波束要少。作为一个示范例子,我们通过使用一个特定的模型来验证这一假设,其中x射线喷流具有比射电喷流更大的开口角。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An X-Ray Study of Lobe-Dominated Radio-Loud Quasars with XMM-Newton
We report on our results of X-ray spectral analysis for a sample of radio-loud quasars covering a wide range of the radio core-dominance Parameter, R, from core-dominated to lobe-dominated objects, using data obtained mostly with the XMM-Newton Observatory. We find that the spectral shape of the underlying power-law continuum is flat even for the lobe-dominated objects (average photon index similar to 1.5), indistinguishable from that of core-dominated quasars. For lobe-dominated objects, contribution of X-rays from the jets is expected to be very small based on previous unification schemes, more than one order of magnitude lower than the observed X-ray luminosities. Assuming that radio-loud quasars follow the same X-ray-UV/optical luminosity relation for the disk-corona. emission as found for radio-quiet quasars, we estimate the X-ray flux contributed by the disk-corona component from the optical/UV continuum. We find that neither the luminosity, nor the spectral shape, of the disk-corona X-ray emission can account for the bulk of the observed X-ray properties. Thus in lobe-dominated quasars, either the disk-corona X-ray emission is much enhanced in strength and flatter in spectral shape (photon index similar to 1.5) compared to normal radio-quiet quasars, or their jet X-ray emission is much enhanced compared to their weak radio core-jet emission. If the latter is the case, our result may imply that the jet emission in X-rays is less Doppler beamed than that in the radio. As a demonstrating example, we test this hypothesis by using a specific model in which the X-ray jet has a larger opening angle than the radio jet.
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