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首页> 外文期刊>The Astrophysical Journal. Letters >Sunward-propagating Whistler Waves Collocated with Localized Magnetic Field Holes in the Solar Wind: Parker Solar Probe Observations at 35.7 R-circle dot Radii
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Sunward-propagating Whistler Waves Collocated with Localized Magnetic Field Holes in the Solar Wind: Parker Solar Probe Observations at 35.7 R-circle dot Radii

机译:向外宣传的吹笛灯与太阳风中的局部磁场孔搭配:帕克太阳能探头观察35.7 r圈点半径

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摘要

Observations by the Parker Solar Probe mission of the solar wind at similar to 35.7 solar radii reveal the existence of whistler wave packets with frequencies below 0.1 f(ce) (20-80 Hz in the spacecraft frame). These waves often coincide with local minima of the magnetic field magnitude or with sudden deflections of the magnetic field that are called switchbacks. Their sunward propagation leads to a significant Doppler frequency downshift from 200-300 to 20-80 Hz (from 0.2 to 0.5 f(ce)). The polarization of these waves varies from quasi-parallel to significantly oblique with wave normal angles that are close to the resonance cone. Their peak amplitude can be as large as 2-4 nT. Such values represent approximately 10% of the background magnetic field, which is considerably more than what is observed at 1 au. Recent numerical studies show that such waves may potentially play a key role in breaking the heat flux and scattering the Strahl population of suprathermal electrons into a halo population.
机译:太阳风的帕克太阳能探针使命与35.7太阳能线的观察结果揭示了吹口机波包的存在,频率低于0.1f(CE)(航天器框架中20-80Hz)。这些波通常与磁场幅度的局部最小值一致或与称为交换的磁场的突然偏转。它们的向阳传播导致200-300至20-80Hz(从0.2至0.5f(CE))的显着多普勒频率降档。这些波的极化从准平行变化,与靠近谐振锥的波正常角度显着倾斜。它们的峰值幅度可以大至2-4 nt。这种值表示大约10%的背景磁场,这远比在1 AU在1AU观察到的大约10%。最近的数值研究表明,这种波可能在打破热通量并将上班子电子的斯特拉尔群散射到卤素种群中可能发挥关键作用。

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