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    Please use this identifier to cite or link to this item: https://ir.lib.ncu.edu.tw/handle/987654321/102141


    Title: Global S4 index variations observed using FORMOSAT-3/ COSMIC GPS RO technique during a solar minimum year
    Authors: 朱延祥;Brahmanandam, P. S.;Uma, G.;Liu, J. Y.;Chu, Y. H.;Latha Devi, N. S. M. P.;Kakinami, Y.
    Contributors: 太空科學與科技研究中心
    Keywords: Atmospheric sciences;COSMIC satellites;Earth sciences;Earth, ocean, space;Electric fields;Equator;Equinoxes;Exact sciences and technology;Global positioning systems;global S4 index maps;GPS;GPS RO technique;Ionosphere;Latitude;Magnetic fields;Seasonal variations;Seasons;Solar activity;Winter
    Date: 2012-01-01
    Issue Date: 2026-04-23 11:03:25 (UTC+8)
    Publisher: Wiley-Blackwell;Washington, DC: Blackwell Publishing Ltd
    Abstract: 摘要: In this paper, presented for the first time the three‐dimensional global morphology and seasonal variations of scintillation index (S4 index) measured from the signal‐to‐noise ratio (SNR) intensity fluctuations of L1 channel of GPS radio occultation (RO) signals using FORMOSAT‐3/COSMIC (in short, F3/C) satellites for a low solar activity year 2008. The S4 index, which confined around ±30° magnetic latitudes, is found to start around post‐sunset hours (1900 MLT, magnetic local time) and often persists till post‐midnight hours (0300 MLT) between 150 and 350 km altitudes during equinox and northern winter seasons while no activity is observed during southern winter season. However, high latitudes are characterized with no scintillation activity beyond 150 km during any season, which implying that in the solar minimum period the drives of instabilities in the auroral, cusp and polar cap regions, namely the gradient drift and velocity shear, are absent. The S4 index at F region altitudes during magnetically quiet times is more intense and extends to higher latitudes than that observed during disturbed time consistent with earlier studies. The equatorial S4 index appears below the peak of F2 layer (hmF2) during most of the seasons although the associated intensities and the time of maximum occurrences are relatively higher and earlier during vernal equinox followed by autumn equinox. This equinoctial asymmetry could be primarily attributed to the asymmetries in eastward drift velocities, thermospheric meridional winds and plasma densities. Further, the global maps of S4 index at E region altitudes (between 75 and 125 km) show strong seasonal variations with highest activity during northern and southern summer solstice in the middle latitudes while it appears on both sides of magnetic equator with less or no activity at and around the equator during equinox seasons. The absence of S4 index along the equator can be understood in terms of the vanishing vertical component of the magnetic field lines that can inhibit the vertical movement and layered deposition of ionized particles of thin irregular electron density layers such as Es‐layers. Keeping in view the importance of these valuable database, we would like to emphasize that the F3/C GPS RO technique can be used to study the ionospheric irregularities at GHz frequency globally directly from the high‐rate L1 data, which reiterating its importance as a powerful tool to explore the terrestrial ionosphere on a global scale.
    其他題名: J. Geophys. Res
    出版者: Washington, DC: Blackwell Publishing Ltd
    出版日期: 2012-09
    出處: Journal of Geophysical Research Atmospheres, 2012-09, Vol.117 (A9), p.n/a
    資源來源: Wiley Online Library - AutoHoldings Journals
    版權: 2012. American Geophysical Union. All Rights Reserved.
    版權: 2015 INIST-CNRS
    版權: Copyright American Geophysical Union 2012
    識別號: ISSN: 0148-0227
    識別號: ISSN: 2169-9380
    識別號: ISSN: 2156-2202
    識別號: EISSN: 2156-2202
    識別號: EISSN: 2169-9402
    識別號: DOI: 10.1029/2012JA017966
    Appears in Collections:[CENTER FOR ASTRONAUTICAL PHYSICS AND ENGINEERING (CAPE)] journal & Dissertation

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