South American auroral reports during the Carrington storm
arXiv:2008.13180 · doi:10.1186/s40623-020-01249-4
Abstract
The importance of the investigation of magnetic superstorms is not limited to academic interest, because these superstorms can cause catastrophic impact on the modern civilisation due to our increasing dependency on technological infrastructure. In this context, the Carrington storm in September 1859 is considered as a benchmark of observational history owing to its magnetic disturbance and equatorial extent of the auroral oval. So far, several recent auroral reports at that time have been published but those reports are mainly derived from the Northern Hemisphere. In this study, we analyse datable auroral reports from South America and its vicinity, assess the auroral extent using philological and astrometric approaches, identify the auroral visibility at - 17.3° magnetic latitude and further poleward and reconstruct the equatorial boundary of the auroral oval to be 25.1° +/- 0.5° in invariant latitude. Interestingly, brighter and more colourful auroral displays were reported in the South American sector than in the Northern Hemisphere. This north-south asymmetry is presumably associated with variations of their magnetic longitude and the weaker magnetic field over South America compared to the magnetic conjugate point and the increased amount of magnetospheric electron precipitation into the upper atmosphere. These results attest that the magnitude of the Carrington storm indicates that its extent falls within the range of other superstorms, such as those that occurred in May 1921 and February 1872, in terms of the equatorial boundary of the auroral oval.
11 pages, 3 figures, and 1 table
References in corpus (4)
- Statistical properties of superflares on solar-type stars based on 1-min cadence data
- A Carrington-like geomagnetic storm observed in the 21st century
- East Asian Observations of Low Latitude Aurora during the Carrington Magnetic Storm
- Estimating Satellite Orbital Drag During Historical Magnetic Superstorms
Cited by in corpus (5)
- Extreme solar events
- Temporal Variations of the Three Geomagnetic Field Components at Colaba Observatory around the Carrington Storm in 1859
- The Extreme Space Weather Event of 1872 February: Sunspots, Magnetic Disturbance, and Auroral Displays
- The intensity and evolution of the extreme storms in January 1938
- The Extreme Space Weather Event in February/March 1941