首页> 外文期刊>The Astrophysical journal >CENTIMETER-WAVELENGTH TOTAL FLUX AND LINEAR POLARIZATION PROPERTIES OF RADIO-LOUD BL LACERTAE OBJECTS
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CENTIMETER-WAVELENGTH TOTAL FLUX AND LINEAR POLARIZATION PROPERTIES OF RADIO-LOUD BL LACERTAE OBJECTS

机译:放射性LO BLACERTAE物体的公分波长总通量和线性极化特性

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摘要

We present results from a long-term program to quantify the range of behavior of the centimeter wavelength total flux and linear polarization variability properties of a sample of 41 radio-loud BL Lac objects using weekly to trimonthly observations with the University of Michigan 26 m telescope operating at 14.5, 8.0, and 4.8 GHz; these observations are used to identify class-dependent differences between these BL Lacs and QSOs in the Pearson-Readhead sample. As a group, the BL Lacs are found to be more highly variable in total flux density than the QSOs. These changes are often nearly simultaneous and of comparable amplitude at 14.5 and 4.8 GHz, which contrasts with the behavior in the QSOs and supports the existence of class-dependent differences in opacity within the parsec-scale jet flows. Structure-function analyses of the flux observations quantify that a characteristic timescale is identifiable in only one-third of the BL Lacs and that in the majority of the program sources the activity is uncorrelated within the timescales probed. The time-averaged fractional linear polarizations are only on the order of a few percent and are consistent with the presence of tangled magnetic fields within the emitting regions. In many sources a preferred long-term orientation of the electric vector position angle is present. When compared with the very long baseline interferometry structural axis, no preferred position angle difference is identified; the derived distribution resembles that known for core components from very long baseline polarimetry measurements. The polarized flux
机译:我们提出了一项长期计划的结果,该计划使用密歇根大学26 m望远镜进行的每周至每三个月的观测来量化41个放射性大的BL Lac物体的样本的厘米波长总通量和线性极化变异性的行为范围工作于14.5、8.0和4.8 GHz;这些观察结果用于识别Pearson-Readhead样本中这些BL Lacs和QSO之间的类相关差异。整体而言,发现BL Lacs的总通量密度比QSO的变化更大。这些变化通常是几乎同时发生的,并且在14.5和4.8 GHz处具有可比的幅度,这与QSO中的行为形成对比,并支持在视差尺度射流中存在不透明度的类相关差异。对通量观测值的结构函数分析表明,只有三分之一的BL Lacs可以确定特征时间尺度,并且在大多数程序源中,活动在所探测的时间尺度内都是不相关的。时间平均分数线性极化仅在百分之几的数量级,并且与发射区域内纠缠磁场的存在一致。在许多来源中,存在电矢量位置角的优选的长期取向。与非常长的基线干涉测量结构轴进行比较时,未发现首选的位置角度差;得出的分布类似于从很长的基线极化测量中获得的核心成分的分布。极化通量

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