智利观测到的圣帕特里克节地磁风暴期间的Pc5脉动效应

IF 0.7 4区 地球科学 Q4 GEOCHEMISTRY & GEOPHYSICS
J. A. Lazzús, M. N. Castillo, J. Lorca-Castillo, C. Olivares-Salazar, A. Rivera-Zepeda, I. Salfate
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引用次数: 0

摘要

本研究利用智利SER站(29.827°S, 71.261°W)的地磁数据、卫星观测和地磁指数,研究了2015年3月17日圣帕特里克节地磁风暴期间的Pc5脉动。频率为1.67 ~ 6.67 mHz的Pc5脉动受Kelvin-Helmholtz不稳定性、场线共振效应、太阳风动力学等多种因素的影响。在风暴期间,太阳风参数发生了显著变化,Pc5脉动与温度、密度、速度和压力等参数呈正相关,特别是在风暴的主要阶段和恢复阶段,Pc5脉动在风暴期间表现出较大的振幅,可能是由磁层MHD波导/腔模式驱动的,并由太阳风对地磁场的大量压缩引起。结果表明,在低纬度地区出现了Pc5脉动,在所有风暴阶段,太阳风参数与Pc5信号具有很强的相关性,相关系数最高为0.98。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Pc5 Pulsation Effects during the St. Patrick’s Day Geomagnetic Storm Observed from Chile

Pc5 Pulsation Effects during the St. Patrick’s Day Geomagnetic Storm Observed from Chile

This study investigates Pc5 pulsations during the St. Patrick’s Day geomagnetic storm of March 17, 2015, using ground-based magnetic data from the SER station in Chile (29.827° S, 71.261° W), satellite observations, and geomagnetic indices. Pc5 pulsations, with frequencies of 1.67–6.67 mHz, are influenced by various factors, including the Kelvin–Helmholtz instability, field line resonance effects, and solar wind dynamics. During this storm ignificant variations in solar wind parameters were observed, with positive correlations between Pc5 pulsations and parameters like temperature, density, speed, and pressure, especially during the main and recovery phases Pc5 pulsations exhibited large amplitudes during the storm, potentially driven by magnetospheric MHD waveguide/cavity mode and induced by the substantial compression of the geomagnetic field from the solar wind. Our results show the appearance of Pc5 pulsations at low latitudes and strong correlations between solar wind parameters and Pc5 signals during all storm phases, with maximum correlation coefficients of 0.98.

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来源期刊
Geomagnetism and Aeronomy
Geomagnetism and Aeronomy Earth and Planetary Sciences-Space and Planetary Science
CiteScore
1.30
自引率
33.30%
发文量
65
审稿时长
4-8 weeks
期刊介绍: Geomagnetism and Aeronomy is a bimonthly periodical that covers the fields of interplanetary space; geoeffective solar events; the magnetosphere; the ionosphere; the upper and middle atmosphere; the action of solar variability and activity on atmospheric parameters and climate; the main magnetic field and its secular variations, excursion, and inversion; and other related topics.
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