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The Multifrequency Siberian Radioheliograph

机译:多频西伯利亚放射线描记器

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The ten-antenna prototype of the multifrequency Siberian radioheliograph is described. The prototype consists of four parts: antennas with broadband front-ends, analog back-ends, digital receivers and a correlator. The prototype antennas are mounted on the outermost stations of the Siberian Solar Radio Telescope (SSRT) array. A signal from each antenna is transmitted to a workroom by an analog fiber optical link, laid in an underground tunnel. After mixing, all signals are digitized and processed by digital receivers before the data are transmitted to the correlator. The digital receivers and the correlator are accessible by the Local Area Network (LAN). The frequency range of the prototype is from 4 to 8 GHz. Currently the frequency switching observing mode is used. The prototype data include both circular polarizations at a number of frequencies given by a list. This prototype is the first stage of the multifrequency Siberian radioheliograph development. It is assumed that the radioheliograph will consist of 96 antennas and will occupy stations of the West-East-South subarray of the SSRT. The radioheliograph will be fully constructed in the autumn of 2012. We plan to reach the brightness temperature sensitivity of about 100 K for the snapshot image, a spatial resolution up to 13 arcseconds at 8 GHz and a polarization measurement accuracy about a few percent. First results with the ten-antenna prototype are presented of observations of solar microwave bursts. The prototype's abilities to estimate source size and locations at different frequencies are discussed.
机译:描述了多频西伯利亚射线日射仪的十天线原型。该原型包括四个部分:带宽带前端的天线,模拟后端,数字接收器和相关器。原型天线安装在西伯利亚太阳射电望远镜(SSRT)阵列的最外面的站上。来自每个天线的信号通过铺设在地下隧道中的模拟光纤链路传输到工作室。混合后,所有信号均被数字化并由数字接收器处理,然后再将数据传输到相关器。可以通过局域网(LAN)访问数字接收器和相关器。原型的频率范围是4至8 GHz。当前使用频率切换观察模式。原型数据包括列表给出的多个频率下的两个圆极化。该原型机是多频西伯利亚放射Heli Heliograph开发的第一阶段。假设放射线描记器将由96根天线组成,并将占据SSRT的东西南南子阵列的站。放射线描记器将在2012年秋季全面建造。我们计划使快照图像的亮度温度敏感度达到约100 K,在8 GHz时的空间分辨率可达13弧秒,极化测量精度约为百分之几。十天线原型的初步结果介绍了太阳微波爆发的观测结果。讨论了原型在不同频率下估算光源尺寸和位置的能力。

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