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Digital techniques for ground-based low-frequency radio astronomy

机译:地面低频射电天文数字技术

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Abstract: Far prior to any other wavelength domains, decameter radioastronomy has become a challenging task because of man made interference due to the increasing needs in telecommunications. However most of the astrophysical studies in this frequency band, - particularly those of non thermal radiations from magnetized objects - , require high gain multi-polarization antennas and the use of high sensitivity, high dynamic range spectroscopy techniques. New generation of wide band spectrum analyzers, well suited to overcome these constraints, are presently developed in Meudon observatory in collaboration with the Space Research Institute (Graz, Austria). They are based on the utilization of newly available, high performance, programmable digital circuits for signal processing, arranged in dedicated, parallel architecture, which can directly compute the power spectrum of the input signal. As an example, we describe here a specialized real-time analyzer for studying polarized decameter emissions from Jupiter and the Sun. With this device, the full spectral analysis (four Stokes parameters) of a 10 MHz bandwidth can be performed at the millisecond time scale, over 1024 channels and within a 70 dB dynamic range. The unprecedented capabilities of this analyzer were evaluated during the last Jovian opposition, by using the Decameter Array in Nancay, France. Some examples are presented, with emphasis on results on the shortest fine structures, which are characteristics of cyclotron maser radiations from planets. Perspectives for extending to shorter wavelengths (namely decimeter or centimeter ones) and for enhancing capabilities by implementing dedicated softwares are discussed. The offered possibility of processing the telescope signal in real time - in order, for instance, to manage the man made radio interference problem - , indeed appears as a key to maintain acceptable sensitivity in any future, large radio telescope system operating on the ground. !6
机译:摘要:由于电信需求的增加,由于人为干扰,十米射电天文学已经成为一项具有挑战性的任务。但是,在该频带上的大多数天体研究,尤其是来自磁化物体的非热辐射的研究,都需要高增益多极化天线以及使用高灵敏度,高动态范围光谱技术。目前,Meudon天文台与空间研究所(奥地利格拉茨)合作开发了非常适合克服这些限制的新一代宽带频谱分析仪。它们基于对信号处理的最新可用高性能可编程数字电路的利用,这些电路以专用的并行架构排列,可以直接计算输入信号的功率谱。例如,我们在这里描述了一种专门的实时分析仪,用于研究木星和太阳的极化十米辐射。使用该设备,可以在毫秒级的时间范围内,在1024个通道上并且在70 dB的动态范围内执行10 MHz带宽的全频谱分析(四个Stokes参数)。该分析仪的空前性能是在上一届Jovian反对派期间,通过使用法国Nancay的Decameter阵列进行评估的。给出了一些例子,重点是在最短的精细结构上的结果,这些结构是行星回旋加速器辐射的特征。讨论了扩展到较短波长(即分米或厘米波长)并通过实现专用软件增强功能的观点。所提供的实时处理望远镜信号的可能性-例如,以解决人为的无线电干扰问题-的确,在任何未来运行于地面的大型射电望远镜系统中,保持其可接受的灵敏度确实是关键。 !6

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