论文标题
极端闪光灯的星际闪烁:PKS B1144-379
Interstellar Scintillation of an Extreme Scintillator: PKS B1144-379
论文作者
论文摘要
塔斯马尼亚大学Ceduna射电望远镜已用于研究BL LAC对象PKS PKS B1144-379的无线电通量密度的快速变化。在2003年至2011年之间的大约九年中,对这种极端闪烁器进行了高度监测。我们使用了从强度时间序列创建的结构函数来确定可变性的特征时间范围。一贯观察到在每年的一定时期内的特征时间尺度,这表明了通过星际散射屏幕闪烁的年度周期。每年最合适的年度周期模型表明,闪烁模式具有各向异性结构,其散射屏幕的上限为距离约0.84 kpc。在某些年周期拟合中,较高的各向异性表明内在源结构的变化可能会影响变异性时间尺度。我们发现,仅在某些年份的变异时间范围内出现了一个突出的年度周期,在其他证据表明核心是紧凑的情况下。从我们的测量值中,我们计算出核心角度在5.65-15.90 $μ$(0.05-0.13 PC)之间变化。发现核心成分在总通量密度的两个耀斑期间最紧凑,这在2005年和2008年观察到。我们得出的结论是,PKS B1144-379的无线电通量密度的长期变异性是由于来源的内在变化所致,这会影响我们在其可变性时间尺度上测量年度周期的能力。
The University of Tasmania Ceduna radio telescope has been used to investigate rapid variability in the radio flux density of the BL Lac object PKS B1144-379 at 6.7 GHz. High-cadence monitoring of this extreme scintillator was carried out over a period of approximately nine years, between 2003 and 2011. We have used structure functions created from the intensity time series to determine the characteristic timescale of the variability. The characteristic timescale is consistently observed to increase during certain periods of each year, demonstrating the annual cycle expected for scintillation through an interstellar scattering screen. The best-fitting annual cycle model for each year suggests that the scintillation pattern has an anisotropic structure and that the upper limit of its scattering screen is at a distance of ~0.84 kpc. Higher anisotropy in some of the annual cycle fits suggests that changes in the intrinsic source structure might be influencing the variability timescale. We found a prominent annual cycle is only present in the variability timescale for certain years where other evidence suggests that the core is compact. From our measurements, we calculated that the core angular size varied between 5.65-15.90 $μ$as (0.05-0.13 pc). The core component was found to be at its most compact during two flares in the total flux density, which were observed in 2005 and 2008. We conclude that the long-term variability in the radio flux density of PKS B1144-379 is due to intrinsic changes in the source and that these affect our ability to measure an annual cycle in its variability time scale.