Stansby David, Salem Chadi, Matteini Lorenzo, Horbury Timothy
1Department of Physics, Imperial College London, London, SW7 2AZ UK.
2Space Sciences Laboratory, University of California, Berkeley, CA 94720 USA.
Sol Phys. 2018;293(11):155. doi: 10.1007/s11207-018-1377-3. Epub 2018 Nov 26.
In the near future, and will provide the first comprehensive measurements of the solar wind in the inner heliosphere since the mission in the 1970s. We describe a reprocessing of the original ion distribution functions to provide reliable and reproducible data to characterise the proton core population of the solar wind in the inner heliosphere. A systematic fitting of bi-Maxwellian distribution functions was performed to the raw ion distribution function data to extract the proton core number density, velocity, and temperatures parallel and perpendicular to the magnetic field. We present radial trends of these derived proton parameters, forming a benchmark to which new measurements in the inner heliosphere will be compared. The new dataset has been made openly available for other researchers to use, along with the source code used to generate it.
在不久的将来,[具体内容1]和[具体内容2]将提供自20世纪70年代[相关任务名称]以来首次对日球层内部太阳风的全面测量。我们描述了对原始[具体名称]离子分布函数的重新处理,以提供可靠且可重复的数据,来表征日球层内部太阳风的质子核心群体。对原始[具体名称]离子分布函数数据进行了双麦克斯韦分布函数的系统拟合,以提取质子核心数密度、速度以及平行和垂直于磁场的温度。我们展示了这些导出的质子参数的径向趋势,形成了一个基准,可供日球层内部新的测量结果进行比较。新数据集已向其他研究人员公开提供使用,同时还提供了用于生成该数据集的源代码。