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The interplay of the solar wind proton core and halo populations: EMIC instability

机译:太阳风质子的相互作用和核心光环人群:位的不稳定

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The kinetic properties of the solar wind protons (ions), like their temperature anisotropy and the resulting instabilities, are, in general, investigated considering only the proton core (or thermal) populations. The implication of the suprathermal halo components is minimized or just ignored, despite the fact that their presence in the solar wind is continuously reported by the observations, and their kinetic energy density may be significant. Whether they are originating in the corona or solar wind, the energetic particles may result from acceleration by the plasma turbulence or from the pitch angle scattering of the streaming protons by the self-generated fluctuations. The presence of suprathermal protons in the heliosphere suggests, therefore, a direct implication in resonant interactions, e.g., Landau and cyclotron, with plasma particles. This paper presents the results of a first investigation on the interplay of the proton core and suprathermal halo, when both these two populations may exhibit temperature anisotropies, which destabilize the electromagnetic ion (proton) cyclotron (EMIC) modes. These results clearly show that for conditions typically encountered in the solar wind, the effects of the suprathermals can be more important than those driven by the core. Remarkable are also the cumulative effects of the core and halo components, which change dramatically the instability conditions.
机译:太阳风质子的动力学性质(离子),像他们的各向异性和温度一般来说,产生的不稳定,研究只考虑质子(或核心热)的人口。最小化或只是suprathermal光环组件忽视,尽管他们的存在太阳风不断报道的的观察,他们的动能密度可能是巨大的。在日冕和太阳风,精力充沛粒子可能导致从加速度等离子体湍流或螺距角散射的质子流自我产生的波动。日球层表明suprathermal质子,因此,直接影响共振交互,例如,朗道和回旋等离子体粒子。第一次调查的相互作用质子核心和suprathermal光环,当两者这两个人群可能出现温度各向异性现象,破坏电磁离子(质子)回旋加速器(位)模式。条件通常遇到的太阳能风,suprathermals能的影响更重要的是比由核心驱动的。的累积效应也显著核心和光环组件的变化显著的不稳定条件。

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