Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Rapid Auroral Wandering During the Laschamps Event

View through CrossRef
41 thousand years ago, the Laschamps geomagnetic excursion caused Earth’s geomagnetic field to drastically diminish to ~4% of modern values and modified the geomagnetic dipole axis. While the impact of this geomagnetic event on environmental factors and human lifestyle has been contemplated to be linked with modifications in the geospace environment, no concerted investigation has been conducted to study this until recently. We present an initial investigation of the global space environment and related plasma environments during the several phases of the Lachamps event using an advanced multi-model approach. We use recent paleomagnetic field models of this event to study the paleomagnetosphere with help of the global magnetohydrodynamic model BATS-R-US. Here we go beyond a simple dipole approximation but consider a realistic geomagnetic field configuration. The field is used within BATS-R-US to generate the magnetosphere during discrete epochs spanning the peak of the event. Since solar conditions have remained fairly constant over the last ~100k years, modern estimates of the solar wind were used to drive the model. Finally, plasma pressure and currents generated by BATS-R-US at their inner boundary are used to compute auroral fluxes using a stand-alone version of the MAGNIT model, an adiabatic kinetic model of the aurora. Our results show that changes in the geomagnetic field, both in strength and the dipole tilt angle, have profound effects on the space environment and the ensuing auroral pattern. Magnetopause distances during the deepest phase of the excursion match previous predictions by studies like Cooper et al. (2021), while high-resolution mapping of magnetic fields allow close examination of magnetospheric structure for non-dipolar configurations. Temporal progression of the event also exhibits rapid locomotion of the auroral region over ~250 years along with the movement of the geomagnetic poles. Our estimates suggest that the aurora extended further down, with the center of the oval located at near-equatorial latitudes during the peak of the event. While the study does not find evidence of any link between geomagnetic variability and habitability conditions, geographic locations of the auroral oval coincide with early human activity in the Iberian peninsula and South China Sea.
Title: Rapid Auroral Wandering During the Laschamps Event
Description:
41 thousand years ago, the Laschamps geomagnetic excursion caused Earth’s geomagnetic field to drastically diminish to ~4% of modern values and modified the geomagnetic dipole axis.
While the impact of this geomagnetic event on environmental factors and human lifestyle has been contemplated to be linked with modifications in the geospace environment, no concerted investigation has been conducted to study this until recently.
We present an initial investigation of the global space environment and related plasma environments during the several phases of the Lachamps event using an advanced multi-model approach.
We use recent paleomagnetic field models of this event to study the paleomagnetosphere with help of the global magnetohydrodynamic model BATS-R-US.
Here we go beyond a simple dipole approximation but consider a realistic geomagnetic field configuration.
The field is used within BATS-R-US to generate the magnetosphere during discrete epochs spanning the peak of the event.
Since solar conditions have remained fairly constant over the last ~100k years, modern estimates of the solar wind were used to drive the model.
Finally, plasma pressure and currents generated by BATS-R-US at their inner boundary are used to compute auroral fluxes using a stand-alone version of the MAGNIT model, an adiabatic kinetic model of the aurora.
Our results show that changes in the geomagnetic field, both in strength and the dipole tilt angle, have profound effects on the space environment and the ensuing auroral pattern.
Magnetopause distances during the deepest phase of the excursion match previous predictions by studies like Cooper et al.
(2021), while high-resolution mapping of magnetic fields allow close examination of magnetospheric structure for non-dipolar configurations.
Temporal progression of the event also exhibits rapid locomotion of the auroral region over ~250 years along with the movement of the geomagnetic poles.
Our estimates suggest that the aurora extended further down, with the center of the oval located at near-equatorial latitudes during the peak of the event.
While the study does not find evidence of any link between geomagnetic variability and habitability conditions, geographic locations of the auroral oval coincide with early human activity in the Iberian peninsula and South China Sea.

Related Results

Wandering
Wandering
Wandering is an embodied movement through a landscape, cityscape, or soundscape; it is a venture that one may undertake voluntarily or reluctantly. It is similar to wayfaring and r...
Sporadic aurorae observed in East Asia
Sporadic aurorae observed in East Asia
Abstract. All the accessible auroral observations recorded in Chinese and Japanese histories during the interval AD 1840–1911 are investigated in detail. Most of these auroral reco...
Danish auroral science history
Danish auroral science history
Abstract. Danish auroral science history begins with the early auroral observations made by the Danish astronomer Tycho Brahe during the years from 1582 to 1601 preceding the Maund...
Auroral structure and dynamics from GOLD
Auroral structure and dynamics from GOLD
The Global-scale Observations of the Limb and Disk (GOLD) mission data contain significant quantitative information about the aurora on a global scale. Here we present techniques f...
Revisiting substorm events with preonset aurora
Revisiting substorm events with preonset aurora
Abstract. Nishimura et al. (2010) proposed a new plasma intrusion or preonset aurora scenario of substorm triggering. In this scenario, a substorm is triggered by a fast earthward ...
Cross-Sectional and Longitudinal Changes in Mind Wandering in Older Adulthood
Cross-Sectional and Longitudinal Changes in Mind Wandering in Older Adulthood
Age-related declines in mind wandering are well established. Theories of mind wandering have attempted to explain why this decline occurs, but no one theory firmly predicts such ch...
The Mono Lake and Laschamps Geomagnetic Excursions Recorded by Sediments in the Drake Passage
The Mono Lake and Laschamps Geomagnetic Excursions Recorded by Sediments in the Drake Passage
AbstractThe Drake Passage is characterized by strong ocean currents barely allowing the deposition of fine grained sediments. Only in smaller basins protected from these currents s...
What Does "Mind-Wandering" Mean To The Folk? An Empirical Investigation
What Does "Mind-Wandering" Mean To The Folk? An Empirical Investigation
Although mind-wandering research is rapidly progressing, stark disagreements are emerging about what the term “mind-wandering” means. Four prominent views define mind-wandering as ...

Back to Top