Complex Ionospheric Irregularity Echoes Observed by Low Latitude Long Range Ionospheric Radar

电离层 白天 地质学 雷达 赤道 地球物理学 大地测量学 低纬度 多普勒雷达 卫星 F区域 多普勒效应 亚暴 纬度 地磁风暴 磁倾角 赤道电射流 地球磁场 遥感 电离层探测 风暴 航程(航空) 总电子含量 天波 电离层吸收 超视距雷达
作者
Ye Li,Lianhuan Hu,Guozhu Li,Baiqi Ning,Guofeng Dai,Wenjie Sun,Xie Hy,Xiukuan Zhao,Yi Li,Jianfei Liu,Prayitno Abadi,Prasert Kenpankho,Bo Xiong
出处
期刊:Journal Of Geophysical Research: Space Physics [Wiley]
卷期号:131 (1)
标识
DOI:10.1029/2025ja034381
摘要

Abstract Using the Low lAtitude long Range Ionospheric raDar (LARID) at Dongfang (19.2°N, 108.8°E), Hainan Island, China, we report a unique case of complex ionospheric irregularities observed on 9 June 2024. The most interesting aspect is the first‐time long‐range (∼2,000 km) detection of daytime ionospheric irregularities and post‐sunset band‐like irregularity structures by HF radar at low latitudes. By incorporating VHF radar and global navigation satellite system (GNSS) rate of total electron content index (ROTI) observations, the radio wave propagation modes of the ionospheric irregularity events observed by LARID and evolution of these ionospheric irregularities were analyzed. The daytime ionospheric irregularity echoes observed by LARID over the Indian Ocean exhibited westward drift, evident in both echo patterns and Doppler velocities. These ionospheric echoes were likely backscattered from E region field aligned irregularities by the “downleg” of the 1‐hop HF ray path. The post‐sunset irregularity echoes observed by LARID over Indian Ocean manifested as a band‐like structure. This structure was closely attached to the bottom of ground/sea scatter echoes and showed the same range variation as the ground/sea scatters. GNSS ROTI observation revealed that irregularities primarily appeared south of the magnetic equator and drifted eastward across the eastern longitudes in later hours. Analysis indicates that the displacement of small‐scale irregularities within the equatorial plasma bubble event along the magnetic field likely contributed to the band‐like irregularity structure observed by LARID and the asymmetric irregularity distribution observed by GNSS.
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