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Form of the Frequency Spectrum of Fluctuating Radiation in the Case of Interferometric Reception During Experiments on Radio Sounding of the Solar Corona

机译:太阳日冕的无线电测深实验中干涉接收情况下波动辐射频谱的形式

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摘要

We study theoretically the profile of a spectral line of radiation which is received by an interferometer after propagation through a medium with developed turbulent structure. We derive a formula describing the resulting frequency spectrum of an initially monochromatic radiation after its propagation through a multi-scale medium with “strong” large-scale and “weak” small-scale irregularities. It is shown that the frequency spectrum observed in this case should comprise the main spectral line with Gaussian profile and “wings” decreasing according to a power law with index dependent on the orientation of the interferometer baseline with respect to the direction of regular drift of “frozen-in” irregularities of the medium. We analyze distortions of the spectral response of a very-long-baseline interferometer due to the effect of large-scale irregularities of a medium with developed turbulent structure on wideband radiation from extraterrestrial discrete radio sources. It is shown that if the amplitude fluctuations of the received radiation are weak, then the measured frequency spectrum contains information on the drift velocity and the index of the spatial spectrum of interplanetary plasma irregularities with scales from hundreds to thousands of kilometers.
机译:我们从理论上研究了辐射谱线的轮廓,该辐射谱线是在经过发展成湍流结构的介质中传播之后被干涉仪接收的。我们推导了一个公式,该公式描述了最初的单色辐射在通过具有“强”大规模和“弱”小规模不规则现象的多尺度介质传播之后的最终频谱。结果表明,在这种情况下观察到的频谱应包括具有高斯分布的主频谱线和根据功率定律减小的“机翼”,其功率指数取决于干涉仪基线相对于“常规漂移”方向的方向。冻结”介质的不规则性。我们分析了一个非常长的基线干涉仪的光谱响应的畸变,这是由于具有湍流结构的介质的大规模不规则性对地外离散无线电源的宽带辐射的影响所致。结果表明,如果接收到的辐射的幅度波动很小,则测得的频谱将包含有关漂移速度的信息以及星际间等离子体不规则性的空间谱,其尺度范围为数百到数千公里。

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