Javascript must be enabled to continue!
Geomagnetic field shielding over the past 100 000 years
View through CrossRef
<p>The geomagnetic field prevents energetic particles, such as galactic cosmic rays, from directly interacting with the Earth's atmosphere. The geomagnetic field is not static but constantly changing, and over the last 100,000 years several geomagnetic excursions occurred. During geomagnetic field excursions, the field strength is significantly decreased and the field morphology is controlled by non-dipole components, and more cosmic ray particles can access the Earth's atmosphere. Paleomagnetic field models provide a global view of the long-term geomagnetic field evolution, however, with individual spatial and temporal resolution. Here, we reconstruct the geomagnetic shielding effect over the last 100,000 years by calculating the geomagnetic field cutoff rigidity using four global paleomagnetic field models, i.e., GGF100k, GGFSS70, LSMOD.2, and CALS10k.2. We find that the non-dipole components of the geomagnetic field are not negligible for estimating the long-term geomagnetic shielding effect, in particular during excursions. Our results indicate that cosmic ray flux, impact area, and cosmic ray radiation intensity increase strongly during the excursions. Our results provide the possibility to accurately estimate the cosmogenic isotope production rate and cosmic radiation dose rate covering the last 100,000 years.</p>
Title: Geomagnetic field shielding over the past 100 000 years
Description:
<p>The geomagnetic field prevents energetic particles, such as galactic cosmic rays, from directly interacting with the Earth's atmosphere.
The geomagnetic field is not static but constantly changing, and over the last 100,000 years several geomagnetic excursions occurred.
During geomagnetic field excursions, the field strength is significantly decreased and the field morphology is controlled by non-dipole components, and more cosmic ray particles can access the Earth's atmosphere.
Paleomagnetic field models provide a global view of the long-term geomagnetic field evolution, however, with individual spatial and temporal resolution.
Here, we reconstruct the geomagnetic shielding effect over the last 100,000 years by calculating the geomagnetic field cutoff rigidity using four global paleomagnetic field models, i.
e.
, GGF100k, GGFSS70, LSMOD.
2, and CALS10k.
2.
We find that the non-dipole components of the geomagnetic field are not negligible for estimating the long-term geomagnetic shielding effect, in particular during excursions.
Our results indicate that cosmic ray flux, impact area, and cosmic ray radiation intensity increase strongly during the excursions.
Our results provide the possibility to accurately estimate the cosmogenic isotope production rate and cosmic radiation dose rate covering the last 100,000 years.
</p>.
Related Results
Evolution of Antimicrobial Resistance in Community vs. Hospital-Acquired Infections
Evolution of Antimicrobial Resistance in Community vs. Hospital-Acquired Infections
Abstract
Introduction
Hospitals are high-risk environments for infections. Despite the global recognition of these pathogens, few studies compare microorganisms from community-acqu...
ANALYSIS OF GEOMAGNETIC DATABASES IMPACTING SPACE WEATHER
ANALYSIS OF GEOMAGNETIC DATABASES IMPACTING SPACE WEATHER
Through the complex analysis of the geomagnetic database of the Surlari Geomagnetic Observatory for over 80 years, corroborated with the data of other planetary observatories from ...
First Onsite Automatic Geomagnetic Observatory Improves Well-Bore Positioning
First Onsite Automatic Geomagnetic Observatory Improves Well-Bore Positioning
Abstract
Improvements in measurement while drilling (MWD) and service reliability over the past 25 years has made MWD tools the most cost-effective method for calcul...
Characterizing anomalous geomagnetic induction from coastal effects with transfer functions and gradient measurements
Characterizing anomalous geomagnetic induction from coastal effects with transfer functions and gradient measurements
Abstract. The occurrence of anomalous subsurface currents in a region is of significant geophysical importance. Several geomagnetic methods have been developed to characterize the ...
Signature of Alfvénic and compressive waves in corotating Solar Wind high-speed streams on low-frequency geomagnetic activity at high latitudes
Signature of Alfvénic and compressive waves in corotating Solar Wind high-speed streams on low-frequency geomagnetic activity at high latitudes
In the Solar Wind (SW), when a fast stream overtakes a slower one, it forms a corotating high-speed stream (HSS) with an upstream corotating interaction region (CIR) and a downstre...
Bismuth Pelvic X‐Ray Shielding Reduces Radiation Dose Exposure in Pediatric Radiography
Bismuth Pelvic X‐Ray Shielding Reduces Radiation Dose Exposure in Pediatric Radiography
Background. Radiation using conventional X‐ray is associated with exposure of radiosensitive organs and typically requires the use of protection. This study is aimed at evaluating ...
The study of active geomagnetic shielding coils system for JUNO
The study of active geomagnetic shielding coils system for JUNO
Abstract
The Jiangmen Underground Neutrino Observatory (JUNO) is a
large liquid scintillator (LS) detector for neutrino mass ordering
and other neutrino physics ...
History of Kakioka Magnetic Observatory
History of Kakioka Magnetic Observatory
Abstract. Kakioka Magnetic Observatory (KMO) was founded in 1913 by Central Meteorological Observatory (CMO, later Japan Meteorological Agency) as a successor of Tokyo Magnetic Obs...

