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Langmuir wave electric fields induced by electron beams in the heliosphere

机译:琅勃拉波电场由电子束诱导在氦圈

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摘要

Solar electron beams responsible for type III radio emission generate Langmuir waves as they propagate out from the Sun. The Langmuir waves are observed via in?situ electric field measurements. These Langmuir waves are not smoothly distributed but occur in discrete clumps, commonly attributed to the turbulent nature of the solar wind electron density. Exactly how the density turbulence modulates the Langmuir wave electric fields is understood only qualitatively. Using weak turbulence simulations, we investigate how solar wind density turbulence changes the probability distribution functions, mean value and variance of the beam-driven electric field distributions. Simulations show rather complicated forms of the distribution that are dependent upon how the electric fields are sampled. Generally the higher magnitude of density fluctuations reduce the mean and increase the variance of the distribution in a consistent manor to the predictions from resonance broadening by density fluctuations. We also demonstrate how the properties of the electric field distribution should vary radially from the Sun to the Earth and provide a numerical prediction for the in?situ measurements of the upcoming Solar Orbiter and Solar Probe Plus spacecraft.
机译:原电子束负责III型无线电发射产生Langmuir Wave,因为它们从太阳传播出来。通过in in in anitue电场测量观察Langmuir波。这些Langmuir波不顺畅地分布,但在离散团块中发生,通常归因于太阳能通电的湍流性质。正是密度湍流如何调制Langmuir波电场的定性地理解。使用弱湍流模拟,我们研究了太阳能密度湍流如何改变概率分布函数,平均值和光束驱动电场分布的平均值和方差。仿真显示相当复杂的分布形式,这些分布取决于电场如何采样。通常,密度波动的较高幅度降低了平均值并提高了从密度波动的共振扩展的预测中分布的分布的方差。我们还证明了电场分布的性质应该如何从太阳到地球径向变化,并为即将到来的太阳能轨道器和太阳能探头加宇宙飞船的原位测量提供了数值预测。

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