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arXiv:2307.05687 (physics)
[提交于 2023年7月11日 ]

标题: 低纬度地区用大型射电望远镜测量的电离层密度变化的谱分析

标题: Spectral Analysis of ionospheric density variations measured with the large radio telescope in the Low-Latitude region

Authors:Sarvesh Mangla, Abhirup Datta
摘要: The low-latitude ionosphere is a dynamic region with a wide range of disturbances in temporal and spatial scales. The Giant Metrewave Radio Telescope (GMRT) situated in the low-latitude region has demonstrated its ability to detect various ionospheric phenomena. It can detect total electron content (TEC) variation with precision of 1 mTECU and also can measure TEC gradient with an accuracy of about $\rm7\times 10^{-4}\,TECU\,km^{-1}$. This paper describes the spectral analysis of previously calculated TEC gradient measurements and validates them by comparing their properties using two bands. The analysis tracked individual waves associated with medium-scale traveling ionospheric disturbances (MSTIDs) and smaller waves down to wavelengths of $\sim$ 10 km. The ionosphere is found to have unanticipated changes during sunrise hours, with waves changed propagation direction as the sun approached the zenith. Equatorial spread $F$ disturbances during sunrise hours is observed, along with smaller structures moving in the same direction.
摘要: The low-latitude ionosphere is a dynamic region with a wide range of disturbances in temporal and spatial scales. The Giant Metrewave Radio Telescope (GMRT) situated in the low-latitude region has demonstrated its ability to detect various ionospheric phenomena. It can detect total electron content (TEC) variation with precision of 1 mTECU and also can measure TEC gradient with an accuracy of about $\rm7\times 10^{-4}\,TECU\,km^{-1}$. This paper describes the spectral analysis of previously calculated TEC gradient measurements and validates them by comparing their properties using two bands. The analysis tracked individual waves associated with medium-scale traveling ionospheric disturbances (MSTIDs) and smaller waves down to wavelengths of $\sim$ 10 km. The ionosphere is found to have unanticipated changes during sunrise hours, with waves changed propagation direction as the sun approached the zenith. Equatorial spread\,$F$ disturbances during sunrise hours is observed, along with smaller structures moving in the same direction.
评论: 17页,2个图,2个表格,已被《地球物理研究通讯》接受发表
主题: 空间物理 (physics.space-ph) ; 地球与行星天体物理学 (astro-ph.EP); 天体物理学的仪器与方法 (astro-ph.IM); 地球物理 (physics.geo-ph); 等离子体物理 (physics.plasm-ph)
引用方式: arXiv:2307.05687 [physics.space-ph]
  (或者 arXiv:2307.05687v1 [physics.space-ph] 对于此版本)
  https://doi.org/10.48550/arXiv.2307.05687
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相关 DOI: https://doi.org/10.1029/2023GL103305
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来自: Sarvesh Mangla [查看电子邮件]
[v1] 星期二, 2023 年 7 月 11 日 18:00:57 UTC (2,453 KB)
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