论文标题

敏捷的非常低的频率无线电频谱探索器

An Agile Very Low Frequency Radio Spectrum Explorer

论文作者

Chen, Linjie, Yan, Yihua, Fan, Qiuxiang, Geng, Lihong, Bisoi, S. K.

论文摘要

电磁光谱中的非常低的频率(VLF)制度低于30 MHz,目前由于其潜在的重要科学成果探索了许多未知的外层外源,瞬变等,目前吸引了射电天文学研究的全球关注。然而,地球电离层,电离层失真和人工射频干扰(RFI)的非透明度使得很难通过基于地面的仪器检测VLF天体射击。克服这些问题的直接解决方案是基于太空的VLF射电望远镜,就像Chang'e 4号航天器上的VLF无线电仪器一样。但是,建造这样的太空望远镜将不可避免地成本高昂,技术上具有挑战性。替代方法将是基于地面的VLF射电望远镜。特别是,在2020年后的时期,预计太阳能和陆地电离层活动将处于“平静”状态时,它将为我们提供一个很好的机会进行VLF地面无线电观测。预计这是一个机会,我们建立了一个敏捷的VLF无线电谱探险仪,与当前运行的Mingantu Spectra无线电射击(Muser)共同划分。该仪器包括在1-70 MHz的VLF频率范围内运行的四个天线。与他们一起,我们采用了八通道的模拟和数字接收器来放大,数字化和处理天线收到的无线电信号。我们在本文中介绍了VLF无线电频谱探索器,该仪器将有助于对VLF无线电排放的天体研究。

The very low frequency (VLF) regime below 30 MHz in the electromagnetic spectrum has presently drawing global attentions in radio astronomical research due to its potentially significant science outcomes exploring many unknown extragalactic sources, transients, and so on. However, the non-transparency of the Earth's ionosphere, ionospheric distortion and artificial radio frequency interference (RFI) have made it difficult to detect the VLF celestial radio emission with ground-based instruments. A straightforward solution to overcome these problems is a space based VLF radio telescope, just like the VLF radio instruments onboard the Chang'E 4 spacecraft. But building such a space telescope would be inevitably costly and technically challenging. The alternative approach would be then a ground based VLF radio telescope. Particularly, in the period of post 2020 when the solar and terrestrial ionospheric activities are expected to be in a 'calm' state, it will provide us a good chance to perform VLF ground-based radio observations. Anticipating such an opportunity, we built an agile VLF radio spectrum explorer co-located with the currently operational Mingantu Spectra Radio Heliograph (MUSER). The instrument includes four antennas operating in the VLF frequency range 1-70 MHz. Along with them, we employ an eight-channel analog and digital receivers to amplify, digitize and process the radio signals received by the antennas. We present in the paper this VLF radio spectrum explorer and the instrument will be useful for celestial studies of VLF radio emissions.

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