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首页> 外文期刊>PASJ: Publications of the Astronomical Society of Japan >Photopolarimetric monitoring of blazars in the optical and near-infrared bands with the Kanata telescope. I. Correlations between flux, color, and polarization
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Photopolarimetric monitoring of blazars in the optical and near-infrared bands with the Kanata telescope. I. Correlations between flux, color, and polarization

机译:使用Kanata望远镜对光学和近红外波段中的酒渣进行光偏振监测。 I.通量,颜色和偏振之间的相关性

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We report on the correlation between the flux, color, and polarization variations on time scales of days-months in blazars, and discuss their universal aspects. We performed monitoring of 42 blazars in the optical and near-infrared bands from 2008 to 2010 using TRISPEC attached to the "Kanata" 1.5-m telescope. We found that 28 blazars exhibited "bluer-when-brighter" trends in their whole or a part of time-series data sets. This corresponds to 88% of objects that were observed for >10 days. Thus, our observation unambiguously confirmed that the "bluer-whenbrighter" trend is common in the emission from blazar jets. This trend was apparently generated by a variation component with a constant and relatively blue color and an underlying red component. Prominent short-term flares on time scales of days-weeks tended to exhibit a spectral hysteresis; their rising phases were bluer than their decay phases around the flare maxima. In contrast to the strong flux - color correlation, the correlation of the flux and polarization degree was relatively weak; only 10 objects showed significant positive correlations. Rotations of polarization were detected only in three objects: PKS 1510-089, 3C 454.3, and PKS 1749+096, and possibly in S5 0716+714. We also investigated the dependence of the degree of variability on the luminosity and the synchrotron peak frequency, vpeak. As a result, we found that lower luminosity and higher vpeak objects had smaller variations in their amplitudes both in the flux, color, and polarization degree. Our observation suggests the presence of several distinct emitting sources, which have different variation time-scales, colors, and polarizations. We propose that the energy injection by, for example, internal shocks in relativistic shells is a major factor for blazar variations on time scales of both days and months.
机译:我们报告了天体中天数月的时间尺度上的通量,颜色和极化变化之间的相关性,并讨论了它们的普遍性。从2008年到2010年,我们使用连接到“ Kanata” 1.5米望远镜的TRISPEC对光学和近红外波段的42种blazar进行了监测。我们发现28种blazar在全部或部分时间序列数据集中表现出“变蓝变亮”趋势。这对应于> 10天观察到的对象的88%。因此,我们的观察清楚地证实,“蓝色变亮”趋势在布拉扎尔射流的排放中很普遍。这种趋势显然是由具有恒定且相对蓝色的变化分量和潜在的红色分量产生的。在几天-几周的时间尺度上突出的短期耀斑往往表现出频谱滞后现象。在耀斑最大值附近,它们的上升阶段比其衰减阶段更蓝。与强的通量-颜色相关性相反,通量和偏振度的相关性相对较弱。只有10个对象显示出显着的正相关。仅在三个对象中检测到极化旋转:PKS 1510-089、3C 454.3和PKS 1749 + 096,可能在S5 0716 + 714中。我们还研究了变化程度对光度和同步加速器峰值频率vpeak的依赖性。结果,我们发现,较低的发光度和较高的vpeak物体在通量,颜色和偏振度上的幅度变化较小。我们的观察结果表明存在几种不同的发射源,它们具有不同的变化时标,颜色和极化。我们建议通过相对论壳内部的冲击来注入能量,这是导致天体和天体时间尺度上的爆炸变化的主要因素。

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