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X-ray versus Optical Variations in the Seyfert 1 Nucleus NGC 3516: A Puzzling Disconnectedness

机译:Seyfert 1核NGC 3516中的X射线与光学变化:令人困惑的脱节

摘要

We present optical broadband (B and R) observations of the Seyfert 1 nucleus NGC 3516, obtained at Wise Observatory from March 1997 to March 2002, contemporaneously with X-ray 2-10 keV measurements with RXTE. With these data we increase the temporal baseline of this dataset to 5 years, more than triple to the coverage we have previously presented for this object. Analysis of the new data does not confirm the 100-day lag of X-ray behind optical variations, tentatively reported in our previous work. Indeed, excluding the first year's data, which drive the previous result, there is no significant correlation at any Lag between the X-ray and optical bands. We also find no correlation at any lag between optical flux and various X-ray hardness ratios. We conclude that the close relation observed between the bands during the first year of our program was either a fluke, or perhaps the result of the exceptionally bright state of NGC 3516 in 1997, to which it has yet to return. Reviewing the results of published joint X-ray and UV/optical Seyfert monitoring programs, we speculate that there are at least two components or mechanisms contributing to the X-ray continuum emission up to 10 key: a soft component that is correlated with UV/optical variations on timescales approx. greater than 1 day, and whose presence can be detected when the source is observed at low enough energies (approx. 1 keV), is unabsorbed, or is in a sufficiently bright phase; and a hard component whose variations are uncorrelated with the UV/optical.
机译:我们介绍了1997年3月至2002年3月在Wise天文台获得的Seyfert 1核NGC 3516的光学宽带(B和R)观测结果,同时使用RXTE对X射线2-10 keV进行了测量。利用这些数据,我们将该数据集的时间基线提高到了5年,是我们之前针对该对象提出的覆盖范围的三倍多。对新数据的分析并不能确认X射线落后于光学变化的100天滞后,这在我们先前的工作中已初步报告。的确,不包括驱动前一年结果的第一年数据,X射线和光学波段之间的任何滞后都没有显着相关性。我们还发现在光通量和各种X射线硬度比之间的任何滞后之间都没有相关性。我们得出的结论是,在我们计划的第一年中,各个频段之间观察到的密切关系要么是fl幸,要么是1997年NGC 3516异常亮丽的状态的结果,至今尚未恢复。回顾已发表的X射线和紫外线/光学塞弗特联合监测计划的结果,我们推测至少有两个成分或机制导致X射线连续谱发射达到10个关键点:与紫外线/紫外线相关的软成分时间尺度上的光学变化大于1天,并且在足够低的能量(约1 keV)下观察到该源,未被吸收或处于足够亮的状态时,可以检测到其存在;以及与紫外线/光学无关的硬质组件。

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