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New Constraints on the Black Hole Low/Hard State Inner Accretion Flow with NuSTAR

机译:NuSTAR对黑洞低/硬状态内部吸积流的新约束

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摘要

We report on an observation of the Galactic black hole candidate GRS 1739–278 during its 2014 outburst, obtained with NuSTAR. The source was captured at the peak of a rising "low/hard" state, at a flux of ~0.3 Crab. A broad, skewed iron line and disk reflection spectrum are revealed. Fits to the sensitive NuSTAR spectra with a number of relativistically blurred disk reflection models yield strong geometrical constraints on the disk and hard X-ray "corona." Two models that explicitly assume a "lamp post" corona find its base to have a vertical height above the black hole of h = 5^(+7)_(-2) (GM)/c^(2) and h = 18 ± 4 GM/c ^2(90% confidence errors); models that do not assume a "lamp post" return emissivity profiles that are broadly consistent with coronae of this size. Given that X-ray microlensing studies of quasars and reverberation lags in Seyferts find similarly compact coronae, observations may now signal that compact coronae are fundamental across the black hole mass scale. All of the models fit to GRS 1739–278 find that the accretion disk extends very close to the black hole—the least stringent constraint is r_(in) = 5^(+3)_(-4) GM/c^(2). Only two of the models deliver meaningful spin constraints, but a = 0.8 ± 0.2 is consistent with all of the fits. Overall, the data provide especially compelling evidence of an association between compact hard X-ray coronae and the base of relativistic radio jets in black holes.
机译:我们报告了通过NuSTAR获得的银河黑洞候选GRS 1739-278在其2014年爆发期间的观测结果。源是在“低/硬”状态上升的峰值处捕获的,通量为〜0.3 Crab。揭示了一条宽阔的斜铁线和圆盘反射光谱。与许多相对论性模糊的磁盘反射模型拟合敏感的NuSTAR光谱,会对磁盘和硬X射线“电晕”产生强烈的几何约束。明确假设为“灯柱”电晕的两个模型发现其基座在黑洞上方的垂直高度为h = 5 ^(+ 7)_(-2)(GM)/ c ^(2),h = 18 ±4 GM / c ^ 2(90%置信误差);不带有“灯柱”的模型返回的发射率曲线与该尺寸的日冕大致一致。鉴于对塞弗特类星体和混响滞后的X射线微透镜研究发现了类似的致密日冕,现在的观察结果可能表明致密日冕是整个黑洞质量尺度的基础。所有符合GRS 1739–278的模型都发现吸积盘非常靠近黑洞延伸-最小严格约束为r_(in)= 5 ^(+ 3)_(-4)GM / c ^(2 )。只有两个模型提供了有意义的旋转约束,但是a = 0.8±0.2与所有拟合均一致。总体而言,这些数据提供了特别有说服力的证据,表明紧凑的硬X射线日冕与黑洞中相对论射流的基础之间存在关联。

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