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首页> 外文期刊>The Astrophysical journal >FIRST DETECTION OF NEAR-INFRARED INTRADAY VARIATIONS IN THE SEYFERT 1 NUCLEUS NGC 4395
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FIRST DETECTION OF NEAR-INFRARED INTRADAY VARIATIONS IN THE SEYFERT 1 NUCLEUS NGC 4395

机译:SEYFERT 1 NUCLEUS NGC 4395的近红外日内变化的首次检测

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摘要

We carried out a one-night optical Ⅴ and near-infrared JHK monitoring observation of the least luminous Seyfert 1 galaxy, NGC 4395, on 2004 May 1, and detected for the first time the intraday flux variations in the J and H bands, while such variation was not clearly seen for the K band. The detected J and H variations are synchronized with the flux variation in the Ⅴ band, which indicates that the intraday-variable component of near-infrared continuum emission of the NGC 4395 nucleus is an extension of power-law continuum emission to the near-infrared and originates in an outer region of the central accretion disk. On the other hand, from our regular program of long-term optical BVI and near-infrared JHK monitoring observation of NGC 4395 from 2004 February 12 until 2005 January 22, we found large flux variations in all the bands on timescales of days to months. The optical BVI variations are almost synchronized with each other but not completely with the near-infrared JHK variations. The color temperature of the near-infrared variable component is estimated to be T = 1320-1710 K, in agreement with thermal emission from hot dust tori in active galactic nuclei (AGNs). We therefore conclude that the near-infrared variation consists of two components having different timescales, so that a small K-flux variation on a timescale of a few hours would possibly be veiled by large variation of thermal dust emission on a timescale of days.
机译:我们于2004年5月1日对最小发光的Seyfert 1星系NGC 4395进行了为期一夜的Ⅴ和近红外JHK光学监视观测,并首次检测到J和H波段的日内通量变化,而对于K波段,这种变化还看不到。检测到的J和H变化与Ⅴ波段的通量变化同步,这表明NGC 4395核的近红外连续谱发射的日内变化分量是幂律连续谱发射到近红外的扩展并且起源于中央吸积盘的外部区域。另一方面,从我们从2004年2月12日到2005年1月22日对NGC 4395进行长期光学BVI和近红外JHK监测的常规程序,我们发现,在几天到几个月的时间范围内,所有波段的通量变化都很大。光学BVI变体几乎彼此同步,但与近红外JHK变体不完全同步。据估计,近红外可变成分的色温为T = 1320-1710 K,这与活跃银河原子核(AGNs)中热尘埃托的热辐射一致。因此,我们得出的结论是,近红外变化由具有不同时间尺度的两个分量组成,因此,几小时时间尺度上的小K磁通变化可能会因几天时间尺度上的热粉尘排放量大变化而被掩盖。

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