The impact of energetic electron precipitation (EEP) on the chemistry of the middle atmosphere (50–90 km) is still an outstanding question as accurate quantification of EEP is lacking due to instrumental challenges and insufficient pitch angle coverage of current particle detectors. The Medium Energy Proton and Electron Detectors (MEPED) instrument on board the NOAA/Polar Orbiting Environmental Satellites (POES) and MetOp spacecraft has two sets of electron and proton telescopes pointing close to zenith (0°) and in the horizontal plane (90°). Using measurements from either the 0° or 90° telescope will underestimate or overestimate the bounce loss cone flux, respectively, as the energetic electron fluxes are often strongly anisotropic with d...
The atmospheric effects of precipitating electrons are not fully understood, and uncertainties are l...
The influence of solar variability on the polar atmosphere and climate due to energetic electron pre...
Electron precipitation from the Earth's inner magnetosphere transmits solar variability to the Earth...
Quantitative measurements of medium energy electron (MEE) precipitation (>40 keV) are a key to under...
This thesis has been a part of the research in the Q3 group of the Birkeland Centre for Space Scienc...
It is well known that energetic particles can penetrate deep into the atmosphere and initiate a chai...
Energetic electrons are deposited into the atmosphere from Earth's inner magnetosphere, resulting in...
Utilizing observations from the Medium Energy Proton and Electron Detector (MEPED) on board the Pola...
High-energy electron precipitation from the radiation belts can penetrate deep into the mesosphere a...
Energetic particle precipitation leads to ionization in the Earth's atmosphere, initiating the forma...
Observations have shown that mesospheric hydroxyl (OH) is affected by energetic electron precipitati...
In 2008 a sequence of geomagnetic storms occurred triggered by high-speed solar wind streams from co...
Energetic particle precipitation leads to ionization in the Earth\u27s atmosphere, initiating the fo...
Energetic Electron Precipitation (EEP) from the plasma sheet and the radiation belts ionizes the pol...
Precipitation of relativistic electrons into the atmosphere has been suggested as the primary loss m...
The atmospheric effects of precipitating electrons are not fully understood, and uncertainties are l...
The influence of solar variability on the polar atmosphere and climate due to energetic electron pre...
Electron precipitation from the Earth's inner magnetosphere transmits solar variability to the Earth...
Quantitative measurements of medium energy electron (MEE) precipitation (>40 keV) are a key to under...
This thesis has been a part of the research in the Q3 group of the Birkeland Centre for Space Scienc...
It is well known that energetic particles can penetrate deep into the atmosphere and initiate a chai...
Energetic electrons are deposited into the atmosphere from Earth's inner magnetosphere, resulting in...
Utilizing observations from the Medium Energy Proton and Electron Detector (MEPED) on board the Pola...
High-energy electron precipitation from the radiation belts can penetrate deep into the mesosphere a...
Energetic particle precipitation leads to ionization in the Earth's atmosphere, initiating the forma...
Observations have shown that mesospheric hydroxyl (OH) is affected by energetic electron precipitati...
In 2008 a sequence of geomagnetic storms occurred triggered by high-speed solar wind streams from co...
Energetic particle precipitation leads to ionization in the Earth\u27s atmosphere, initiating the fo...
Energetic Electron Precipitation (EEP) from the plasma sheet and the radiation belts ionizes the pol...
Precipitation of relativistic electrons into the atmosphere has been suggested as the primary loss m...
The atmospheric effects of precipitating electrons are not fully understood, and uncertainties are l...
The influence of solar variability on the polar atmosphere and climate due to energetic electron pre...
Electron precipitation from the Earth's inner magnetosphere transmits solar variability to the Earth...