KOPRI Repository

A Statistical Study of Pi2 Pulsations Observed in the Upper Ionosphere Using Swarm Magnetic Field Data

Cited 1 time in wos
Cited 2 time in scopus
Title
A Statistical Study of Pi2 Pulsations Observed in the Upper Ionosphere Using Swarm Magnetic Field Data
Other Titles
Swarm 위성 자기장 관측자료 활용, 전리권 상층 Pi2 진동에 관한 통계적 연구
Authors
Park, Jae-Hee
Kim, Khan-Hyuk
Kwon, Hyuck-Jin
Jee, Geonhwa
Hwang, Junga
Subject
Astronomy & Astrophysics
Keywords
PI-2 PULSATIONSAMPTE-CCEMECHANISM
Issue Date
2020-01
Citation
Park, Jae-Hee, et al. 2020. "A Statistical Study of Pi2 Pulsations Observed in the Upper Ionosphere Using Swarm Magnetic Field Data". JOURNAL OF GEOPHYSICAL RESEARCH-SPACE PHYSICS, 125(1): 1-12.
Abstract
The properties of Pi2 pulsations observed in the upper ionosphere are studied using mag netic field data acquired by the Swarm-A spacecraft in low Earth orbit (LEO) and at the low-latitude Bohyun ground station (BOH, L = 1.3) for January 2014-June 2015. From time intervals when Swarm-A was on the nightside (magnetic local time (MLT) = 1800-0600 hrs) and the BOH station was near midnight (MLT = 2100-0300 hrs), we identified 621 Pi2 events in the horizontal H component of the BOH data. For each event we examined the coherence between the horizontal H component on the ground and the Bx (radial), By (azimuthal), or Bz (compressional) components at Swarm-A. Out of 621 event, the Bx-H high coherence (> 0.7) events are ∼6%, the By-H high coherence events are ∼2%, and the Bz-H high coherence events are ∼25%. The ground-satellite high coherence events occurred when the spacecraft was located at magnetic latitudes between ?50? and 50?. Using the ground-satellite high coherence events, we statistically examined the latitudinal structure of the relative amplitude and phase of the ionospheric Pi2 pulsations and found that their latitudinal variations is consistent with the north-south mode structure expected from the plasmaspheric resonance model. Our statistical results indicate that the source of ionospheric Pi2 pulsations is the plasmaspheric resonance.
URI
https://repository.kopri.re.kr/handle/201206/12964
DOI
http://dx.doi.org/10.1029/2019JA027293
Type
Article
Station
해당사항없음
Indexed
SCI
Appears in Collections  
2019-2019, Understanding polar upper atmospheric changes by energy inputs from the space environment and the lower atmosphere (19-19) / Jee, Geonhwa (PE19020)
Files in This Item

Items in DSpace are protected by copyright, with all rights reserved, unless otherwise indicated.

Browse