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太阳风中离子-质子差分流的系统测量。

Systematic measurements of ion-proton differential streaming in the solar wind.

机构信息

Extraterrestrial Physics, Institute for Experimental and Applied Physics, Christian-Albrechts-University Kiel, Leibnizstrasse 11-19, 24118 Kiel, Germany.

出版信息

Phys Rev Lett. 2011 Apr 15;106(15):151103. doi: 10.1103/PhysRevLett.106.151103. Epub 2011 Apr 14.

Abstract

The small amount of heavy ions in the highly rarefied solar wind are sensitive tracers for plasma-physics processes, which are usually not accessible in the laboratory. We have analyzed differential streaming between heavy ions and protons in the solar wind at 1 AU. 3D velocity vector and magnetic field measurements from the Solar Wind Electron Proton Alpha Monitor and the Magnetometer aboard the Advanced Composition Explorer were used to reconstruct the ion-proton difference vector v(ip) = v(i) - v(p) from the 12 min 1D Solar Wind Ion Composition Spectrometer observations. We find that all 44 analyzed heavy ions flow along the interplanetary magnetic field at velocities which are smaller than, but comparable to, the local Alfvén speed C(A). The flow speeds of 35 of the 44 ion species lie within the range of ±0.15C(A) around 0.55C(A), the flow speed of He(2+).

摘要

在高度稀薄的太阳风中,少量的重离子是等离子体物理过程的敏感示踪剂,而这些过程通常在实验室中无法进行研究。我们分析了在 1AU 处太阳风中重离子和质子的差分流动。利用来自“太阳风电子质子阿尔法监测仪”和“高级成分探测器”上的磁力计的三维速度矢量和磁场测量数据,从 12 分钟的一维太阳风离子成分光谱仪观测结果中重构出离子-质子差分矢量 v(ip) = v(i) - v(p)。我们发现,所有 44 种分析出的重离子都沿着行星际磁场流动,速度小于但与局部阿尔文速度 C(A)相当。44 种离子种类中的 35 种的流动速度位于 0.55C(A)左右,在 ±0.15C(A)范围内,He(2+)的流动速度为 0.55C(A)。

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