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    請使用永久網址來引用或連結此文件: https://ir.lib.ncu.edu.tw/handle/987654321/102337


    題名: The fast development of solar terrestrial sciences in Taiwan
    作者: 林佳賢;Liu, Jann-Yenq;Chang, Loren Chee-Wei;Chao, Chi-Kuang;Chen, Ming-Quey;Chu, Yen-Hsyang;Hau, Lin-Ni;Huang, Chien-Ming;Kuo, Cheng-Ling;Lee, Lou-Chuang;Lyu, Ling-Hsiao;Lin, Chia-Hsien;Pan, Chen-Jeih;Shue, Jih-Hong;Su, Ching-Lun;Tsai, Lung-Chih;Yang, Ya-Hui;Lin, Chien-Hung;Hsu, Rue-Ron;Su, Han-Tzong
    貢獻者: 地球科學學院太空科學與工程學系
    關鍵詞: Atmospheric Sciences;Biogeosciences;Earth and Environmental Science;Earth Sciences;Earthquakes;Education;Geophysics/Geodesy;Global positioning systems;GPS;History and development of Solar Terrestrial Sciences including auroral sub-storms;Ionosphere;Latitude;Oceanography;Physics;Planetology;R&D;Research & development;Review;Seismic activity;Solar activity;Solar eclipses;Terrestrial environments
    日期: 2016-12-01
    上傳時間: 2026-04-23 11:06:33 (UTC+8)
    出版者: Springer Open;Cham: Springer International Publishing
    摘要: 摘要: In Taiwan, research and education of solar terrestrial sciences began with a ground-based ionosonde operated by Ministry of Communications in 1952 and courses of ionospheric physics and space physics offered by National Central University (NCU) in 1959, respectively. Since 1990, to enhance both research and education, the Institute of Space Science at NCU has been setting up and operating ground-based observations of micropulsations, very high-frequency radar, low-latitude ionospheric tomography network, high-frequency Doppler sounder, digital ionosondes, and total electron content (TEC) derived from ground-based GPS receivers to study the morphology of the ionosphere for diurnal, seasonal, geophysical, and solar activity variations, as well as the ionosphere response to solar flares, solar wind, solar eclipses, magnetic storms, earthquakes, tsunami, and so on. Meanwhile, to have better understanding on physics and mechanisms, model simulations for the heliosphere, solar wind, magnetosphere, and ionosphere are also introduced and developed. After the 21 September 1999 Mw7.6 Chi–Chi earthquake, seismo-ionospheric precursors and seismo-traveling ionospheric disturbances induced by earthquakes become the most interesting and challenging research topics of the world. The development of solar terrestrial sciences grows even much faster after National Space Origination has been launching a series of FORMOSAT satellites since 1999. ROCSAT-1 (now renamed FORMOSAT-1) measures the ion composition, density, temperature, and drift velocity at the 600-km altitude in the low-latitude ionosphere; FORMOSAT-2 is to investigate lightning-induced transient luminous events, polar aurora, and upper atmospheric airglow, and FORMOSAT-3 probes ionospheric electron density profiles of the globe. In the near future, FORMOSAT-5 and FORMOSAT-7/COSMIC-2 will be employed for studying solar terrestrial sciences. These satellite missions play an important role on the recent development of solar terrestrial sciences in Taiwan.
    其他題名: Geosci. Lett
    出版者: Cham: Springer International Publishing
    出版日期: 2016-06-23
    出處: Geoscience letters, 2016, Vol.3 (1), p.1, Article 18
    資源來源: ProQuest Open Access Content Collection
    版權: The Author(s) 2016
    版權: Geoscience Letters is a copyright of Springer, 2016.
    識別號: ISSN: 2196-4092
    識別號: EISSN: 2196-4092
    識別號: DOI: 10.1186/s40562-016-0049-0
    顯示於類別:[太空科學與工程學系] 期刊論文

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