Javascript must be enabled to continue!
High Latitude Ionospheric Electrodynamics During STEVE and Non-STEVE Substorm Events
View through CrossRef
Previous studies have shown that Strong Thermal Emission Velocity
Enhancement (STEVE) events occur at the end of a prolonged substorm
expansion phase. However, the connection between STEVE occurrence and
substorms and the global high-latitude ionospheric electrodynamics
associated with the development of STEVE and non-STEVE substorms are not
yet well understood. The focus of this paper is to identify
electrodynamics features that are unique to STEVE events through a
comprehensive analysis of ionospheric convection patterns estimated from
SuperDARN plasma drift and ground-based magnetometer data using the
Assimilative Mapping of Geospace Observations (AMGeO) procedure. Results
from AMGeO are further analyzed using principal component analysis and
superposed epoch analysis for 32 STEVE and 32 non-STEVE substorm events.
The analysis shows that the magnitude of cross-polar cap potential drop
is generally greater for STEVE events. In contrast to non-STEVE
substorms, the majority of STEVE events investigated accompany with a
pronounced extension of the dawn cell into the pre-midnight subauroral
latitudes, reminiscent of the Harang reversal convection feature where
the eastward electrojet overlaps with the westward electrojet, which
tends to prolong over substorm expansion and recovery phases. This is
consistent with the presence of an enhanced subauroral electric field
confirmed by previous STEVE studies. The global and localized features
of high-latitude ionospheric convection associated with optical STEVE
events characterized in this paper provide important insights into
cross-scale magnetosphere-ionosphere coupling mechanisms that
differentiate STEVE events from non-STEVE substorm events.
Title: High Latitude Ionospheric Electrodynamics During STEVE and Non-STEVE Substorm Events
Description:
Previous studies have shown that Strong Thermal Emission Velocity
Enhancement (STEVE) events occur at the end of a prolonged substorm
expansion phase.
However, the connection between STEVE occurrence and
substorms and the global high-latitude ionospheric electrodynamics
associated with the development of STEVE and non-STEVE substorms are not
yet well understood.
The focus of this paper is to identify
electrodynamics features that are unique to STEVE events through a
comprehensive analysis of ionospheric convection patterns estimated from
SuperDARN plasma drift and ground-based magnetometer data using the
Assimilative Mapping of Geospace Observations (AMGeO) procedure.
Results
from AMGeO are further analyzed using principal component analysis and
superposed epoch analysis for 32 STEVE and 32 non-STEVE substorm events.
The analysis shows that the magnitude of cross-polar cap potential drop
is generally greater for STEVE events.
In contrast to non-STEVE
substorms, the majority of STEVE events investigated accompany with a
pronounced extension of the dawn cell into the pre-midnight subauroral
latitudes, reminiscent of the Harang reversal convection feature where
the eastward electrojet overlaps with the westward electrojet, which
tends to prolong over substorm expansion and recovery phases.
This is
consistent with the presence of an enhanced subauroral electric field
confirmed by previous STEVE studies.
The global and localized features
of high-latitude ionospheric convection associated with optical STEVE
events characterized in this paper provide important insights into
cross-scale magnetosphere-ionosphere coupling mechanisms that
differentiate STEVE events from non-STEVE substorm events.
Related Results
Investigating Ionospheric Signatures and Magnetosphere-Ionosphere Coupling During STEVE and STEVE-like Events
Investigating Ionospheric Signatures and Magnetosphere-Ionosphere Coupling During STEVE and STEVE-like Events
Strong Thermal Emission Velocity Enhancement (STEVE) events are bright mauve optical emissions that periodically occur around magnetic midnight in sub-auroral regions often after a...
High-latitude crochet (Solar flare effect) as a trigger of pseud-substorm onset
High-latitude crochet (Solar flare effect) as a trigger of pseud-substorm onset
<p>Solar flares are known to enhance the ionospheric electron density and thus influence the electric currents in the D- and E-region. &#160;The geomagnetic d...
Substorm related patterns of electron density and conductance changes in the auroral zone.
Substorm related patterns of electron density and conductance changes in the auroral zone.
<p>Enhanced precipitation of magnetospheric energetic particles during substorms increases ionospheric electron density and conductance. Such enhancements, which have...
Network-based ionospheric gradient monitoring to support ground based augmentation systems
Network-based ionospheric gradient monitoring to support ground based augmentation systems
The Ground Based Augmentation System (GBAS) is a local-area, airport-based augmentation of Global Navigation Satellite Systems (GNSSs) that provides precision approach guidance for...
Atmospheric pCO2 sensitivity to the biological pump in the ocean
Atmospheric pCO2 sensitivity to the biological pump in the ocean
In models of the global carbon cycle, the pCO2of the atmosphere is more sensitive to the chemistry of the high‐latitude surface ocean than the tropical ocean. Because sea‐surface n...
RESPON TEC IONOSFER DI ATAS BANDUNG DAN MANADO TERKAIT FLARE SINAR-X MATAHARI KELAS M5.1 DAN M7.9 TAHUN 2015 (IONOSPHERIC TEC RESPONSE OVER BANDUNG DAN MANADO ASSOCIATED WITH M5.1 AND M7.9 CLASSES OF SOLAR FLARE XRAYS IN 2015)
RESPON TEC IONOSFER DI ATAS BANDUNG DAN MANADO TERKAIT FLARE SINAR-X MATAHARI KELAS M5.1 DAN M7.9 TAHUN 2015 (IONOSPHERIC TEC RESPONSE OVER BANDUNG DAN MANADO ASSOCIATED WITH M5.1 AND M7.9 CLASSES OF SOLAR FLARE XRAYS IN 2015)
The solar flare is potential to cause sudden increase of the electron density in the ionosphere,particularly in D layer, known as Sudden Ionospheric Disturbances (SID). This increa...
A quantile-based composite ionospheric disturbance estimator for RTK positioning reliability
A quantile-based composite ionospheric disturbance estimator for RTK positioning reliability
Abstract
Reliable real-time kinematic (RTK) positioning is highly sensitive to short-term ionospheric irregularities and spatial electron density gradients, which...
High-latitude crochet: solar-flare-induced magnetic disturbance independent from low-latitude crochet
High-latitude crochet: solar-flare-induced magnetic disturbance independent from low-latitude crochet
Abstract. A solar-flare-induced, high-latitude (peak at 70–75∘ geographic latitude – GGlat) ionospheric current system was studied. Right after the X9.3 flare on 6 September 2017, ...

