Temperature anisotropy instabilities stimulated by the interplay of the core and halo electrons in space plasmas

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Abstract

Two central components are revealed by electron velocity distributions measured in space plasmas, a thermal bi-Maxwellian core and a bi-Kappa suprathermal halo. A new kinetic approach is proposed to characterize the temperature anisotropy instabilities driven by the interplay of core and halo electrons. Suggested by the observations in the solar wind, direct correlations of these two populations are introduced as co-variations of the key parameters, e.g., densities, temperature anisotropies, and (parallel) plasma betas. The approach involving correlations enables the instability characterization in terms of either the core or halo parameters and a comparative analysis to depict mutual effects. In the present paper, the instability conditions are described for an extended range of plasma beta parameters, making the new dual approach relevant for a wide variety of space plasmas, including the solar wind and planetary magnetospheres.

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Lazar, M., Shaaban, S. M., Fichtner, H., & Poedts, S. (2018). Temperature anisotropy instabilities stimulated by the interplay of the core and halo electrons in space plasmas. Physics of Plasmas, 25(2). https://doi.org/10.1063/1.5016261

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