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首页> 外文期刊>The Astrophysical journal >OBSERVATIONS SUPPORTING THE ROLE OF MAGNETOCONVECTION IN ENERGY SUPPLY TO THE QUIESCENT SOLAR ATMOSPHERE
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OBSERVATIONS SUPPORTING THE ROLE OF MAGNETOCONVECTION IN ENERGY SUPPLY TO THE QUIESCENT SOLAR ATMOSPHERE

机译:磁对流在能量供应中对静态太阳能的作用

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Identifying the two physical mechanisms behind the production and sustenance of the quiescent solar corona and solar wind poses two of the outstanding problems in solar physics today. We present analysis of spectroscopic observations from the Solar and Heliospheric Observatory that are consistent with a single physical mechanism being responsible for a significant portion of the heat supplied to the lower solar corona and the initial acceleration of the solar wind; the ubiquitous action of magnetoconvection-driven reprocessing and exchange reconnection of the Sun's magnetic field on the supergranular scale. We deduce that while the net magnetic flux on the scale of a supergranule controls the injection rate of mass and energy into the transition region plasma, it is the global magnetic topology of the plasma that dictates whether the released ejecta provides thermal input to the quiet solar corona or becomes a tributary that feeds the solar wind.
机译:确定静态日冕和太阳风产生和维持的两个物理机制是当今太阳物理学中的两个突出问题。我们对来自太阳和日球天文台的光谱观测结果进行分析,这与单个物理机制是一致的,该物理机制负责提供给较低太阳日冕的热量的很大一部分以及太阳风的初始加速。磁对流驱动的后处理和太阳磁场在超粒度尺度上的交换重新连接的普遍作用。我们推论,尽管超微粒子级的净磁通量控制着向过渡区等离子体中的质量和能量的注入速率,但正是等离子体的整体磁拓扑决定了释放的射流是否向安静的太阳能提供热输入。日冕或成为支流太阳风的支流。

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