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首页> 外文期刊>The Astrophysical Journal. Letters >Origin of the Differential Fluxes of Low-energy Electrons in the Inner Heliosheath
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Origin of the Differential Fluxes of Low-energy Electrons in the Inner Heliosheath

机译:内部Heliosheath中的低能量电子差分通量的起源

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The study addresses the question of the origin of low-energy electrons measured by Voyager 1 in the multi-keV range in the inner heliosheath. It intends to demonstrate that the observed keV-fluxes of electrons are consistent with their transmission through the termination shock under the influence of the associated electrostatic field. A power-law representation of the electron velocity distribution just downstream of the solar wind termination shock is motivated and formulated in terms of a so-called κ-distribution function. From this initial function spectral electron fluxes in the range 40-70 keV are derived and compared to the data. It is shown that with κ-values between 7 and 8 the data can be satisfactorily explained. Given these comparatively high κ-values, it is concluded that the electron distribution just downstream of the termination shock relaxes toward but does not reach a Maxwellian shape in the inner heliosheath.
机译:该研究解决了Voyager 1在内部Heliosheath中的多kev范围内测量的低能量电子来源的问题。 它旨在证明观察到的电子助焊剂与在相关静电场的影响下通过终止冲击的传输一致。 在太阳风终止冲击下游的电子速度分布的动力法表示是在所谓的κ分布函数方面的动机和配制。 从该初始函数光谱电子通量范围内的40-70keV的源极和与数据进行比较。 结果表明,在7到8之间的κ值可以令人满意地解释数据。 鉴于这些比较高的κ值,得出结论是,终止冲击下游的电子分布放松,但未达到内部Heliosheath中的最长席位形状。

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