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Wavevector anisotropy of plasma turbulence at ion kinetic scales: solar wind observations and hybrid simulations

机译:离子动力学尺度下等离子体湍流的波矢各向异性:太阳风观测和混合模拟

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Wavevector anisotropy of ion-scale plasma turbulence is studied at various values of ion beta. Two complementary methods are used. One is multi-point measurements of magnetic field in the near-Earth solar wind as provided by the Cluster spacecraft mission, and the other is hybrid numerical simulation of two-dimensional plasma turbulence. Both methods demonstrate that the wavevector anisotropy is reduced with increasing values of ion beta. Furthermore, the numerical simulation study shows the existence of a scaling law between ion beta and the wavevector anisotropy of the fluctuating magnetic field that is controlled by the thermal or hybrid particle-in-cell simulation noise. Likewise, there is weak evidence that the power-law scaling can be extended to the turbulent fluctuating cascade. This fact can be used to construct a diagnostic tool to determine or to constrain ion beta using multi-point magnetic field measurements in space.
机译:研究了离子尺度等离子体湍流在各种离子β值下的波矢各向异性。使用了两种补充方法。一种是由星团飞行器任务提供的近地太阳风中磁场的多点测量,另一种是二维等离子体湍流的混合数值模拟。两种方法都表明,随着离子β值的增加,波矢各向异性会降低。此外,数值模拟研究表明,离子β和波动磁场的波矢各向异性之间存在比例定律,该波动磁场受热或混合单元格内模拟噪声控制。同样,没有证据表明幂律定标可以扩展到湍流波动的级联。此事实可用于构建诊断工具,以使用空间中的多点磁场测量来确定或约束离子β。

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