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首页> 外文期刊>The Astrophysical journal >THE REVERBERATION RADIUS OF THE CENTRAL DUST HOLE IN NGC 5548
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THE REVERBERATION RADIUS OF THE CENTRAL DUST HOLE IN NGC 5548

机译:NGC 5548中中央尘孔的重塑半径

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The most intensive multicolor monitoring observations in the optical and near-infrared wave bands were carried out for the Seyfert 1 galaxy NGC 5548. During a monitoring period from 2001 March to 2003 July, the V(0.55 μm) and K(2.2 μm) fluxes separately reached a minimum state twice. A delayed response of light variations in the K band to those in the V band was detected, and the lag time Δt was measured by a cross-correlation analysis based on a new technique of simulating the light curves to fill in the sampling gaps. The measured lag time is Δt = 48_(-2)~(+3) days in the first minimum state and Δt = 47_(-6)~(+5) days in the second minimum state. The lag time is interpreted as the light-travel time from the central energy source to the surrounding dust torus, because the K light is emitted from the hot dust heated by absorption of ultraviolet and optical light from the central energy source. Compared with lag measurements of the broad emission lines in the literature, the lag time for such dust reverberation is found to be longer, indicating that the inner radius of the dust torus corresponds to an outer edge of the broad emission line region in NGC 5548. Furthermore, the V light curve exhibits short-timescale variations superposed on its global variation. These variations on timescales of 10 days or less are found to correlate with X-ray variations and delay behind them by 1 or 2 days, indicating the optical reprocessing of X-ray emission in the central accretion flow in NGC 5548.
机译:对Seyfert 1星系NGC 5548进行了光学和近红外波段最密集的多色观测。在2001年3月至2003年7月的监测期内,V(0.55μm)和K(2.2μm)通量分别两次达到最低状态。检测到K波段中的光变化对V波段中的光变化的延迟响应,并且基于基于模拟光曲线以填充采样间隙的新技术的互相关分析来测量滞后时间Δt。在第一最小状态下测得的滞后时间为Δt= 48 _(-2)〜(+3)天,在第二最小状态下测得的滞后时间为Δt= 47 _(-6)〜(+5)天。滞后时间被解释为从中央能源到周围尘埃圆环的光程时间,因为K光是通过吸收来自中央能源的紫外线和光学光而加热的热尘埃发出的。与文献中的宽发射线的滞后测量相比,发现这种粉尘混响的滞后时间更长,这表明尘埃圆环的内半径对应于NGC 5548中宽发射线区域的外边缘。此外,V光曲线在其全局变化上叠加了短时标变化。发现10天或更短时间尺度上的这些变化与X射线变化相关,并在它们之后延迟了1或2天,这表明NGC 5548中央吸积流中X射线发射的光学再处理。

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