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Solar Wind Magnetic Field Turbulence over the Solar Activity Cycle Inferred from Coronal Sounding Experiments with Helios Linear-Polarized Signals

机译:太阳能磁场湍流在Helios线性极化信号中从冠状探测实验推断出太阳能活动周期

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摘要

Results of experiments on polarized radio sounding of the outer solar corona using the Helios spacecraft from 1975 to 1984 are presented. The characteristic parameters of the temporal spectra of fluctuations in the Faraday rotation of the plane of polarization for heliocentric distances from 3.5 to 5.5 solar radii are obtained. The absolute level of these fluctuations and, consequently, the level of fluctuations of the magnetic field, is almost independent of the solar activity. It is well known that the global structure of the solar wind varies with the solar cycle such that there is slow solar wind at low latitudes and fast solar wind at high latitudes during solar minima. In contrast, a slow solar wind dominates at all latitudes during solar maxima. One explanation for the invariance of the fluctuations observed by sounding the circumsolar plasma is that the mean magnetohydrodynamic turbulence of the low-latitude, slow solar wind depends weakly on the phase of the solar cycle.
机译:提出了使用Helios航天器从1975年到1984年使用Helios SpaceCraft对外太阳能电晕的实验结果。 获得了从3.5至5.5太阳线的光度距离的极化平面的法拉第旋转的波动时间谱的特征参数。 这些波动的绝对水平,因此,磁场的波动水平几乎与太阳能活动无关。 众所周知,太阳风的全局结构随太阳循环而变化,使得在太阳能最小值期间,在低纬度和高纬度地区的低纬度和快速太阳风中的太阳能缓慢。 相比之下,在太阳能最大值期间,慢太阳风在所有纬度都占主导地位。 通过发出矛盾等离子体观察到的波动的不变性的解释是低纬度的平均磁流体动力学湍流,慢太阳脉风在太阳循环的相位上弱。

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  • 来源
    《Astronomy reports》 |2019年第3期|共8页
  • 作者单位

    Russian Acad Sci Inst Radio Engn &

    Elect Moscow 103907 Russia;

    Russian Acad Sci Inst Radio Engn &

    Elect Moscow 103907 Russia;

    Russian Acad Sci Lebedev Phys Inst Moscow 117924 Russia;

    Univ Bonn Argelander Inst Astron D-53121 Bonn Germany;

    Univ Cologne Rhenish Inst Environm Res D-50931 Cologne Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地质学;
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