超高速开尔文波在低纬度地区的2天电离层振荡

IF 2.9 3区 地球科学 Q2 ASTRONOMY & ASTROPHYSICS
Ashish P. Jadhav, Yosuke Yamazaki, S. Gurubaran, Kaoru Sato, Dai Koshin
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引用次数: 0

摘要

本研究基于2017年12月发生的反电喷流事件的案例研究,建立了超快开尔文波(UFKW)与赤道E区反电喷流(CEJ)的发生和低纬度总电子含量(TEC)的行星波状振荡之间的观测联系。在此期间,利用地基磁强计观测正午的CEJ,周期为~ 2天。对JAGUAR-DAS全中性大气再分析的逐时风数据分析表明,存在一个向东传播的UFKW,其纬向波数为1 (E1),周期为~ 2天,赤道发电机区东风增强,与CEJ的发生相吻合。来自Swarm卫星任务的观测证实了赤道电喷流(EEJ)振荡与UFKW相关的存在。这是首次将UFKW确定为CEJ日常变化的来源。由于CEJ与磁赤道上空白天向上的等离子体漂移减少有关,低纬度地区的TEC也以~ 2天为周期变化。对全球TEC图的分析表明,2天TEC变化不仅包括向东传播波数1分量,而且包括向西传播波数2 (W2)分量。后者来自E1 UFKW与日变化电离层的相互作用。由于E1和W2 2天振荡之间的建设性和破坏性干扰的相互作用,2天TEC变化表现出显著的纵向依赖性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

2-Day Ionospheric Oscillations at Low Latitudes Due To an Ultra-Fast Kelvin Wave

2-Day Ionospheric Oscillations at Low Latitudes Due To an Ultra-Fast Kelvin Wave

This study establishes an observational connection between an ultra-fast Kelvin wave (UFKW) and the occurrence of counter electrojet (CEJ) in the equatorial E region and planetary wave-like oscillations in low-latitude total electron content (TEC), based on a case study of CEJ events that occurred in December 2017. During this period, noontime CEJ was observed by ground-based magnetometers with a periodicity of ∼2 days. The analysis of hourly wind data from the JAGUAR-DAS Whole neutral Atmosphere Reanalysis reveals the presence of an eastward-propagating UFKW with a zonal wavenumber of 1 (E1) and a period of ∼2 days along with an enhancement of eastward wind in the equatorial dynamo region which coincided with occurrence of CEJ. Observations from the Swarm satellite mission confirm the presence of equatorial electrojet (EEJ) oscillations associated with the UFKW. This is the first time that an UFKW has been identified as a source of day-to-day variability in CEJ. As CEJ is linked to a reduced daytime upward plasma drift over the magnetic equator, TEC at low latitudes also varies at a period of ∼2 days. The analysis of global TEC maps reveals that the 2-day TEC variations consist not only of the eastward propagating wavenumber 1 component but also of the westward propagating wavenumber 2 (W2) component. The latter arises from the interaction of the E1 UFKW with the diurnally varying ionosphere. The 2-day TEC variations exhibit significant longitudinal dependence due to the interplay of constructive and destructive interferences between the E1 and W2 2-day oscillations.

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来源期刊
Earth and Space Science
Earth and Space Science Earth and Planetary Sciences-General Earth and Planetary Sciences
CiteScore
5.50
自引率
3.20%
发文量
285
审稿时长
19 weeks
期刊介绍: Marking AGU’s second new open access journal in the last 12 months, Earth and Space Science is the only journal that reflects the expansive range of science represented by AGU’s 62,000 members, including all of the Earth, planetary, and space sciences, and related fields in environmental science, geoengineering, space engineering, and biogeochemistry.
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