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Earth's ionosphere supplied vast majority of ring current ions during May 2024 super geomagnetic storm, study finds

A study published in Science Advances reveals that Earth's ionosphere contributed to the majority of ring current ions during a record-breaking super geomagnetic storm in May 2024. This finding highlights the importance of understanding how much Earth's ionosphere contributes to the ring current, as it may be essential for accurately p...

SourceNagoya University·JournalScience Advances·TypeData/statistical analysis·DateJun 26, 2026

Could ionospheric disturbances influence earthquakes?

The study suggests that ionospheric charge variations could interact with pre-existing fragile structures in the Earth's crust, influencing fracture processes. Strong solar activity could generate electrostatic pressures comparable to tidal or gravitational stresses, potentially contributing to earthquake initiation.

SourceKyoto University·TypeComputational simulation/modeling·DateFeb 5, 2026

As global warming worsens, so may space communications

Researchers at Kyushu University found that rising CO2 levels in the atmosphere may lead to disruptions in shortwave radio communications, including systems used for air traffic control and maritime communication. The ionosphere's cooling due to global warming causes a decrease in air density and accelerates wind circulation.

SourceKyushu University·JournalGeophysical Research Letters·TypeExperimental study·DateOct 27, 2025

Enhanced activity in the upper atmosphere of Sporadic E layers during the 2024 Mother’s Day super geomagnetic storm

A new study reveals that sporadic E layers were significantly enhanced during the recovery phase of the 2024 Mother's Day super geomagnetic storm. The phenomenon, which appears as thin and dense patches of ionized metals, was detected mainly over Southeast Asia, Australia, the South Pacific, and the East Pacific.

SourceKyushu University·JournalGeophysical Research Letters·TypeData/statistical analysis·DateMay 12, 2025

When is an aurora not an aurora?

Researchers propose that parallel electric fields in the upper atmosphere could produce the colorful emissions of Steve and the picket fence. This unusual process has implications for understanding energy flow between Earth's magnetosphere and ionosphere.

SourceUniversity of California - Berkeley·JournalGeophysical Research Letters·TypeComputational simulation/modeling·DateDec 8, 2023

Geomagnetic field protects Earth from electron showers

Researchers at Tohoku University found that the geomagnetic field plays a crucial role in protecting the Earth's lower atmosphere from harmful effects of electron precipitation. The study reveals that the mirror force caused by the magnetic field deflects relativistic electrons upwards, reducing their impact on the ionosphere.

SourceTohoku University·JournalEarth Planets and Space·DateAug 3, 2023

A more precise model of the Earth's ionosphere

A new model of the Earth's ionosphere has been developed using neural networks, which can reconstruct the topside ionosphere with high accuracy. This improvement is crucial for satellite navigation systems, such as global navigation satellite systems (GNSS), which require precise correction of radio signals to mitigate ionospheric delays.

SourceGFZ GeoForschungsZentrum Potsdam, Helmholtz Centre·JournalScientific Reports·TypeData/statistical analysis·DateApr 24, 2023

Signals from the ionosphere could improve tsunami forecasts

Researchers from the University of Washington analyzed the Hunga Tonga-Hunga Ha'apai eruption in the South Pacific, discovering that ionosphere signals can help explain why tsunami waves grew larger and traveled faster than predicted. The study validated the use of GPS signals traveling through the atmosphere to track events on the gro...

SourceUniversity of Washington·JournalGeophysical Research Letters·TypeObservational study·DateDec 12, 2022

Climate change to increase lifetime of space pollution

New research from British Antarctic Survey predicts climate change will extend the lifetime of space debris and elevate the risk of collisions between satellites, due to reduced atmospheric density. The study's findings highlight the need for action to control space pollution and ensure the upper atmosphere remains usable in the future.

SourceBritish Antarctic Survey·JournalGeophysical Research Letters·DateOct 17, 2022

Saturn’s high-altitude winds generate an extraordinary aurorae, study finds

Researchers at the University of Leicester have discovered a new mechanism driving Saturn's massive aurorae, which are fueled by swirling winds in its upper atmosphere. This discovery answers one of NASA's Cassini mission mysteries and highlights the complex interactions between atmospheric weather and aurora creation.

SourceUniversity of Leicester·JournalGeophysical Research Letters·TypeObservational study·DateFeb 7, 2022

International team of scientists proposes a global network—International Meridian Circle Program—to monitor major threats on our environment

An international team of scientists proposes a global network to monitor hazards threatening Earth's ecosystems and human activities. The International Meridian Circle Program aims to track space weather events, geomagnetic field changes, and atmospheric disturbances using a diverse range of instruments.

SourceScience China Press·JournalScience China Earth Sciences·DateDec 24, 2021

The blast that shook the ionosphere

A high-velocity atmospheric wave was generated by Beirut's 2020 ammonium nitrate explosion, rivalling those from volcanic eruptions. The blast caused electron disturbances in Earth's upper atmosphere, including changes in total electron content in the ionosphere.

SourceHokkaido University·JournalScientific Reports·DateMar 16, 2021

The aurora's very high altitude booster

Scientists at Nagoya University have found that an electric accelerator for auroras exists much higher in space than previously thought, beyond 30,000 kilometres above the Earth's surface. This finding offers insight into Earth and other planets as well, shedding light on the process of aurora formation.

SourceNagoya University·JournalScientific Reports·DateMar 9, 2021