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THE WEBT CAMPAIGN ON 3C279 IN 2006

机译:2006年在3C279上举办的WEBT广告系列

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摘要

The quasar 3C 279 was the target of an extensive multiwavelength monitoring campaign from January through April 2006, including an optical-IR-radio Whole Earth Blazar Telescope (WEBT) campaign and Target of Opportunity X-ray and soft.-ray observations with Chandra and INTEGRAL in mid-January 2006, with additional X-ray coverage by RXTE and Swift XRT as well as independent very-high-energy (VHE)gamma-ray observations by MAGIC, which led to the first-ever reported tentative detection of a quasar at VHE gamma-rays. In this paper we summarize the results of the WEBT campaign. The source exhibited substantial variability of optical flux and spectral shape, with a characteristic time scale of a few days. The variability patterns throughout the optical BVRI bands were very closely correlated with each other, while there was no obvious correlation between the optical and radio variability. In intriguing contrast to other (in particular, BL Lac type) blazars, we find a lag of shorter-wavelength behind longer-wavelength variability throughout the RVB wavelength ranges, with a time delay increasing with increasing frequency. Spectral hardening during flares appears delayed with respect to a rising optical flux. This, in combination with the very steep IR-optical continuum spectral index of alpha(o) similar to 1.5-2.0, may indicate a highly oblique magnetic field configuration near the base of the jet, leading to inefficient particle acceleration and a very steep electron injection spectrum. An alternative explanation through a slow (time scale of several days) acceleration mechanism would require an unusually low magnetic field of B < 0.2 G, about an order of magnitude lower than inferred from previous analyses of simultaneous SEDs of 3C 279 and other FSRQs with similar properties.
机译:准星3C 279是2006年1月至2006年4月进行的广泛的多波长监视活动的目标,其中包括光学IR无线电全地球Blazar望远镜(WEBT)活动以及机会目标X射线和Chandra和他的软射线观测。于2006年1月中旬进行INTEGRAL,RXTE和Swift XRT对X射线进行了额外的覆盖,MAGIC对X射线进行了独立的超高能(VHE)伽马射线观测,这导致了有史以来首次报道的对类星体的初步探测在VHE伽马射线在本文中,我们总结了WEBT活动的结果。该光源显示出光通量和光谱形状的显着变化,其特征时间尺度为几天。整个光学BVRI波段的变异性模式彼此之间密切相关,而光学和无线电变异性之间没有明显的相关性。与其他(特别是BL Lac类型)的blazar形成鲜明对比的是,我们发现在整个RVB波长范围内,短波长滞后于长波长可变性,时间延迟随频率的增加而增加。耀斑期间的光谱硬化似乎相对于光通量的增加而延迟。这与非常陡峭的IR-光学连续谱光谱指数α(o)相似(类似于1.5-2.0)相结合,可能表明射流底部附近存在高度倾斜的磁场结构,从而导致无效的粒子加速和非常陡峭的电子注入光谱。通过缓慢的(几天的时间尺度)加速机制的另一种解释将需要异常低的B <0.2 G磁场,这比先前对3C 279的同时SED和其他具有类似功能的FSRQ的分析所得出的推断要低一个数量级。属性。

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