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Sixty-five years of solar radioastronomy: flares, coronal mass ejections and Sun–Earth connection

机译:太阳放射天文学六十五年:耀斑,日冕物质抛射和太阳-地球连接

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This paper will review the input of 65 years of radio observations to our understanding of solar and solar–terrestrial physics. It is focussed on the radio observations of phenomena linked to solar activity in the period going from the first discovery of the radio emissions to present days.We shall present first an ov erview of solar radio physics focussed on the active Sun and on the premices of solar–terrestrial relationships from the discovery to the 1980s. We shall then discuss the input of radioastronomy both atmetric/decimetricwavelengths and at centimetric/millimetric and submillimetric wavelengths to our understanding of flares.We shall also review some of the radio, X-ray and white-light signatures bringing new evidence for reconnection and current sheets in eruptive events. The input of radio images (obtained with a high temporal cadence) to the understanding of the initiation and fast development in the low corona of coronal mass ejections (CMEs) as well as the radio observations of shocks in the corona and in the interplanetary medium will be reviewed. The input of radio observations to our knowledge of the interplanetary magnetic structures (ICMEs) will be summarized; we shall show how radio observations linked to the propagation of electron beams allow to identify small scale structures in the heliosphere and to trace the connection between the Sun and interplanetary structures as far as 4AU.We shall also describe how the radio observations bring useful information on the relationship and connections between the energetic electrons in the corona and the electrons measured in-situ. The input of radio observations on the forecasting of the arrival time of shocks at the Earth as well as on Space Weather studies will be described. In the last section, we shall summarize the key results that have contributed to transform our knowledge of solar activity and its link with the interplanetary medium. In conclusion, we shall indicate the instrumental radio developments at Earth and in space, which are from our point of view, necessary for the future of solar and interplanetary physics.
机译:本文将回顾65年的无线电观测输入,以了解我们对太阳和太阳—地面物理学的理解。它的重点是从第一次发现无线电发射到现在的这段时期内对与太阳活动有关的现象的无线电观测。我们将首先对太阳射电物理学进行概述,重点是活跃的太阳和太阳系的天体。从发现到1980年代的日地关系。然后我们将讨论射电天文在定/分米波长以及在百分/毫米和亚毫米波长的输入,以了解耀斑,并审查一些射电,X射线和白光信号,为重新连接和电流提供新的证据爆发事件中的床单。输入无线电图像(以高时间节奏获得),以了解日冕物质抛射(CME)在低电晕中的启动和快速发展,以及对电晕和行星际介质中电击的无线电观测。被审查。将总结对我们对行星际磁结构(ICME)知识的无线电观测输入;我们将展示与电子束的传播相关的无线电观测如何识别太阳系中的小尺度结构,以及追踪太阳与直到4AU的行星际结构之间的联系。电晕中的高能电子与就地测量的电子之间的关系和联系。将描述关于震动到达地球时间的预测以及空间天气研究的无线电观测输入。在最后一节中,我们将总结对改变我们对太阳活动及其与行星际介质的联系的认识做出贡献的主要结果。最后,我们将指出从我们的角度来看地球和太空中仪器无线电的发展,这对于太阳和行星际物理学的未来必不可少。

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