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首页> 外文期刊>The Astrophysical journal >EVOLUTION OF THE PARSEC-SCALE STRUCTURE OF PKS 1934–638 REVISITED: FIRST SCIENCE WITH THE ASKAP AND NEW ZEALAND TELESCOPES
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EVOLUTION OF THE PARSEC-SCALE STRUCTURE OF PKS 1934–638 REVISITED: FIRST SCIENCE WITH THE ASKAP AND NEW ZEALAND TELESCOPES

机译:修订的1934–638年PKS尺度尺度结构的演变:关于ASKAP和新西兰遥视技术的第一本科学

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摘要

We have studied the archetypal Gigahertz Peaked Spectrum radio galaxy, PKS 1934 – 638, using the Australian Long Baseline Array augmented with two new telescopes that greatly improve the angular resolution of the array. These very long baseline interferometry observations represent the first scientific results from a new antenna in New Zealand and the first antenna of the Australian SKA Pathfinder. A compact double radio source, PKS 1934 – 638 has been monitored over a period of 40 years and the observation described here provides the latest datum, eight years after the previous observation, to aid in the study of the long-term evolution of the source structure. We take advantage of these new long baselines to probe PKS 1934 – 638 at the relatively low frequency of 1.4?GHz in order to examine the effects of optical depth on the structure of the radio source. Optical depth effects, resulting in the observation of frequency-dependent structure, may have previously been interpreted in terms of an expansion of the source as a function of time. Expansion and frequency-dependent effects are important to disentangle in order to estimate the age of PKS 1934 – 638. We show that frequency-dependent structure effects are likely to be important in PKS 1934 – 638 and present a simple two-dimensional synchrotron source model in which opacity effects due to synchrotron self-absorption are taken into account. Evidence for expansion of the radio source over 40 years is therefore weak with consequences for the estimated age of the radio source.
机译:我们已经研究了原型Gigahertz峰值频谱射电星系PKS 1934 – 638,它使用了澳大利亚长基线阵列,并增加了两个新的望远镜,可以大大提高阵列的角分辨率。这些非常长的基线干涉测量观察代表了新西兰新天线和澳大利亚SKA探路者的第一根天线的第一个科学结果。紧凑型双无线电源PKS 1934 – 638进行了40年的监视,此处描述的观测值提供了距先前观测值八年后的最新数据,以帮助研究辐射源的长期演变结构体。我们利用这些新的长基线在1.4?GHz的相对较低频率下探测PKS 1934 – 638,以检查光学深度对无线电源结构的影响。导致观察到频率相关结构的光学深度效应可能先前已根据源随时间的扩展进行了解释。扩展和频率相关的影响对于解开PKS 1934 – 638的寿命很重要。我们证明了频率相关的结构影响在PKS 1934 – 638中可能很重要,并提出了一个简单的二维同步加速器源模型其中考虑了由于同步加速器自吸收引起的不透明性影响。因此,无线电源扩展40年的证据很少,这对无线电源的估计寿命产生了影响。
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