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Low-latitude equinoctial spread-F occurrence at different longitude sectors under low solar activity

机译:低太阳活动下低纬等分展布-F在不同经度扇区的发生

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摘要

We present the results of a comparative study of spread-F signatures over five low-latitude sites: Chiangmai (CGM; 18.8° N, 98.9° E, mag. Lat. 8.8° N), Thailand; Tan-jungsari (TNJ; 6.9° S, 107.6° E, mag. Lat. 16.9° S), Indonesia; Palmas (PAL; 10.2° S, 311.8° E, mag. Lat. 0.9° S) and Sao Jose Dos Campos (SJC; 23.2° S, 314.1° E, mag. Lat. 14.0° S), Brazil; and Tucuman (TUC; 26.9° S, 294.6° E, mag. Lat. 16.8° S), Argentina. The investigation was based on simultaneous ionograms recorded by an FMCW (frequency-modulated continuous-wave) at CGM, an IPS-71 (digital ionosonde from KEL aerospace) at TNJ, a CADI (Canadian Advanced Digital Ionosonde) at PAL and SJC, and an AIS-INGV (Advanced Ionospheric Sounder - Istituto Nazionale di Geofisica e Vulcanologia) at TUC, during the equinoctial periods March-April (R_(12) = 2.0 and R_(12) = 2.2) and September-October (R_(12) = 6.1 and R_(12) = 7.0) 2009, for very low solar activity. Spread-F signatures were categorized into two types: the range spread-F (RSF) and the frequency spread-F (FSF). The study confirms that the dynamics and the physical processes responsible for these phenomena are actually complicated. In fact, the features that arise from the investigation are different, depending on both the longitude sector and on the hemisphere. For instance, TUC, un- der the southern crest of the ionospheric equatorial ionization anomaly (EIA), shows a predominance of RSF signatures, while both SJC, under the southern crest of EIA but in a different longitude sector, and CGM, under the northern crest of EIA, show a predominance of FSF signatures. Moreover, the spread-F occurrence over the longitude sector that includes CGM and TNJ is significantly lower than the spread-F occurrence over the longitude sector of PAL, SJC, and TUC.
机译:我们介绍了在五个低纬度地区的扩展F签名的比较研究结果:清迈(CGM;北纬18.8°,东经98.9°,北纬8.8°),泰国;印度尼西亚的Tan-jungsari(TNJ;南纬6.9°,东经107.6°,纬度为16.9°);巴西的帕尔马斯(PAL;南纬10.2°,东经311.8°,纬度为0.9°)和圣若泽杜斯坎普斯(南纬23.2°,东经314.1°,纬度为14.0°S),巴西;和图库曼(TUC; 26.9°S,294.6°E,纬度为16.8°S),阿根廷。这项研究基于CGM的FMCW(调频连续波),TNJ的IPS-71(来自KEL航空航天公司的数字离子探空仪),PAL和SJC的CADI(加拿大先进数字离子探空仪)记录的同步电离图。在三月至四月(R_(12)= 2.0和R_(12)= 2.2)和9月至10月(R_(12))的等值周期内,在TUC的AIS-INGV(先进的电离层测深仪-地球物理学报) = 6.1,R_(12)= 7.0)2009,因为太阳活动非常低。扩展F签名分为两种类型:范围扩展F(RSF)和频率扩展F(FSF)。研究证实,造成这些现象的动力学和物理过程实际上是复杂的。实际上,调查产生的特征是不同的,这取决于经度扇区和半球。例如,电离层赤道电离异常(EIA)南部波峰下的TUC表现出主要的RSF特征,而EIA南部波峰下但经度不同的SJC和CGM则在CEI下。 EIA的北部波峰显示了FSF签名的优势。此外,在包括CGM和TNJ的经度扇区上的扩展F发生明显低于在PAL,SJC和TUC的经度扇区上的扩展F发生。

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  • 来源
    《Annales Geophysicae》 |2013年第2期|153-162|共10页
  • 作者单位

    Istituto Nazionale di Geofisica e Vulcanologia, Rome, Italy;

    Istituto Nazionale di Geofisica e Vulcanologia, Rome, Italy;

    Division of Ionosphere and Telecommunication, Space Science Center, Indonesian National Institute of Aeronautics and Space (LAPAN), Indonesia;

    Universidade do Vale do Paraiba, Sao Jose dos Campos, Brazil;

    Universidade do Vale do Paraiba, Sao Jose dos Campos, Brazil;

    Universidade do Vale do Paraiba, Sao Jose dos Campos, Brazil;

    Faculty of Engineering, King Mongkut's Institute of Technology Ladkrabang (KMITL), Bangkok 10520, Thailand;

    Faculty of Engineering, King Mongkut's Institute of Technology Ladkrabang (KMITL), Bangkok 10520, Thailand;

    Space Weather and Environment Informatics Laboratory, National Institute of Information and Communications Technology, Tokyo 184-8795, Japan;

    Space Weather and Environment Informatics Laboratory, National Institute of Information and Communications Technology, Tokyo 184-8795, Japan;

    Laboratorio de Telecomunicaciones, DEEC, FACET, Universidad Nacional de Tucuman, Tucuman, Argentina,Laboratorio de Ionosfera, Departamento de Fisica, FACET, Universidad Nacional de Tucuman, Tucuman, Argentina,CIASUR, Facultad regional Tucuman, Universidad Tecnologica Nacional, Tucuman, Argentina;

    Laboratorio de Ionosfera, Departamento de Fisica, FACET, Universidad Nacional de Tucuman, Tucuman, Argentina,CIASUR, Facultad Regional Tucuman, Universidad Tecnologica Nacional, Tucuman, Argentina,Consejo Nacional de Investigaciones Cientificas y Tecnicas, Buenos Aires, Argentina;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Ionosphere (Equatorial ionosphere; Ionospheric irregularities; Wave propagation);

    机译:电离层(赤道电离层;电离层不规则;波传播);

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