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首页> 外文期刊>The Astrophysical journal >PROBING THE INNERMOST REGIONS OF AGN JETS AND THEIR MAGNETIC FIELDS WITH RADIOASTRON. I. IMAGING BL LACERTAE AT 21 μas RESOLUTION
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PROBING THE INNERMOST REGIONS OF AGN JETS AND THEIR MAGNETIC FIELDS WITH RADIOASTRON. I. IMAGING BL LACERTAE AT 21 μas RESOLUTION

机译:用射电astron探测agn飞机的内部区域及其磁场。 I.以21μas的分辨率成像BL蕾丝

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摘要

We present the first polarimetric space very long baseline interferometry (VLBI) imaging observations at 22 GHz. BL?Lacertae was observed in 2013 November 10 with the RadioAstron space VLBI mission, including a ground array of 15 radio telescopes. The instrumental polarization of the space radio telescope is found to be less than 9%, demonstrating the polarimetric imaging capabilities of RadioAstron at 22 GHz. Ground–space fringes were obtained up to a projected baseline distance of 7.9?Earth diameters in length, allowing us to image the jet in BL?Lacertae with a maximum angular resolution of 21 μas, the highest achieved to date. We find evidence for emission upstream of the radio core, which may correspond to a recollimation shock at about 40 μas from the jet apex, in a pattern that includes other recollimation shocks at approximately 100 and 250 μas from the jet apex. Polarized emission is detected in two components within the innermost 0.5 mas from the core, as well as in some knots 3 mas downstream. Faraday rotation analysis, obtained from combining RadioAstron 22 GHz and ground-based 15 and 43 GHz images, shows a gradient in rotation measure and Faraday-corrected polarization vector as a function of position angle with respect to the core, suggesting that the jet in BL?Lacertae is threaded by a helical magnetic field. The intrinsic de-boosted brightness temperature in the unresolved core exceeds K, suggesting, at the very least, departure from equipartition of energy between the magnetic field and radiating particles.
机译:我们提出了在22 GHz下的第一个极化空间超长基线干涉测量(VLBI)成像观察。 BL?Lacertae于2013年11月10日在RadioAstron太空VLBI任务中被观测到,包括由15架射电望远镜组成的地面阵列。发现空间射电望远镜的仪器极化小于9%,这表明RadioAstron在22 GHz时的极化成像能力。获得的地面空间条纹的投影基线距离最长为7.9?地球直径,这使我们能够在BL?Lacertae中对射流成像,最大角分辨率为21μas,是迄今为止达到的最高。我们发现放射性核上游的发射证据,这可能对应于距射流顶点约40μas处的再形成性休克,其模式包括距射流顶点约100和250μas处的其他再形成性休克。在离磁芯最深0.5 mas内的两个分量中,以及在下游3 mass的一些结中,检测到极化发射。通过组合RadioAstron 22 GHz和基于地面的15和43 GHz图像获得的法拉第旋转分析显示,旋转量度和经过法拉第校正的极化矢量相对于铁心位置角的函数呈梯度变化,这表明BL中的射流蝎虎座被螺旋磁场穿过。未分解的磁芯中固有的去提升的亮度温度超过K,这至少表明偏离了磁场和辐射粒子之间的能量均分。
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