论文标题
重新访问AGN PKS 0558-504中的连续混响滞后
Revisiting the Continuum Reverberation Lags in the AGN PKS 0558-504
论文作者
论文摘要
我们对窄线Seyfert 1 Galaxy PKS 0558-504的光度混响映射运动进行了修订分析,并在2008---2010期间与Swift天文台进行了修订。以前,Gliozzi等人使用离散相关函数(DCF)方法发现,短波长连续变化落后于更长的波长的变化,这是预期通过吸积盘热处理X射线的趋势的相反,并且他们将其结果解释为反对重复模型的结果。我们进行了新的DCF测量结果,该测量表明,Gliozzi等人发现的倒置滞后波长关系是由于它们在测量滞后时互换了驾驶的顺序和响应光曲线。为了更准确地确定带间滞后和不确定性,我们使用了四种独立的方法进行了新的测量。这些给出一致的结果,显示时间延迟随波长的函数而增加,如光盘再处理方案所预期的那样。重新分析延迟光谱的斜率似乎与预测的$τ\ proptoλ^{4/3} $关系通过光学较厚且几何薄的积聚盘重新处理,尽管数据点显示出较大的散布范围,但较大的散布范围。
We present a revised analysis of the photometric reverberation mapping campaign of the narrow-line Seyfert 1 galaxy PKS 0558-504 carried out with the Swift Observatory during 2008--2010. Previously, Gliozzi et al.\ found using the Discrete Correlation Function (DCF) method that the short-wavelength continuum variations lagged behind variations at longer wavelengths, the opposite of the trend expected for thermal reprocessing of X-rays by the accretion disc, and they interpreted their results as evidence against the reprocessing model. We carried out new DCF measurements that demonstrate that the inverted lag-wavelength relationship found by Gliozzi et al.\ resulted from their having interchanged the order of the driving and responding light curves when measuring the lags. To determine the inter-band lags and uncertainties more accurately, we carried out new measurements with four independent methods. These give consistent results showing time delays increasing as a function of wavelength, as expected for the disc reprocessing scenario. The slope of the re-analysed delay spectrum appears to be roughly compatible with the predicted $τ\propto λ^{4/3}$ relationship for reprocessing by an optically thick and geometrically thin accretion disc, although the data points exhibit a large scatter about the fitted power-law trend.