A dataset of field-aligned Poynting flux in the dayside polar cap of the northern hemisphere during 2014-2016

Jianping Wang, Beichen Zhang, Chunming Huang, Rui-yuan Liu, Yonghua Liu, Zejun Hu, Jianjun Liu
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Abstract

The transport of electromagnetic energy in the polar upper atmosphere and its spatial and temporal distribution are current hot issues and important topics for studying the polar upper atmospheric environment and space weather forecasting models. Researchers usually adopted the observations from low-altitude polar-orbiting satellites to estimate the magnitude and direction of electromagnetic energy. The continuous accumulation of electromagnetic energy data will be beneficial to the study on the transmission and variation characteristics of electromagnetic energy in the polar ionosphere in China. In this paper, we estimated the distribution of field-aligned Poynting flux, horizontal convection electric field and magnetic field perturbation in the dayside polar cap based on the plasma velocity and magnetic field data of DMSP F17 satellite in the northern hemisphere during 2014-2016. The initial DMSP F17 satellite data included in this dataset are of high quality. The estimation process is rigorous and reasonable, and the data records are complete. The dataset can provide important data support for the study on energy transport and dissipation in the ionosphere/thermosphere in the polar region.
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2014-2016年北半球日侧极帽场向坡印亭通量数据集
电磁能在极地高层大气中的传输及其时空分布是当前极地高层大气环境和空间天气预报模型研究的热点和重要课题。研究人员通常采用低空极轨卫星的观测来估计电磁能的大小和方向。电磁能数据的不断积累将有利于研究我国极地电离层电磁能的传输和变化特征。本文根据DMSP F17卫星2014-2016年在北半球的等离子体速度和磁场数据,估计了dayside极帽中场对准坡印廷通量、水平对流电场和磁场扰动的分布。该数据集中包含的DMSP F17卫星初始数据具有高质量。估算过程严谨合理,数据记录完整。该数据集可以为极地电离层/热层能量传输和耗散的研究提供重要的数据支持。
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