Quantitative measurements of medium energy electron (MEE) precipitation (>40 keV) are a key to understand the total effect of particle precipitation on the atmosphere. The Medium Energy Proton and Electron Detector (MEPED) instrument on board the NOAA/Polar Orbiting Environmental Satellites (POES) has two sets of electron telescopes pointing ~0° and ~90° to the local vertical. Pitch angle anisotropy, which varies with particle energy, location, and geomagnetic activity, makes the 0° detector measurements a lower estimate of the flux of precipitating electrons. In the solar forcing recommended for Coupled Model Intercomparison Project (CMIP) 6 (v3.2) MEE precipitation is parameterized by Ap based on 0° detector measurements hence providing a...
Abstract One of the most popular long‐term data sets of energetic particles used in, for example, l...
Quantification of energetic electron precipitation caused by wave-particle interactions is fundament...
The influence of solar variability on the polar atmosphere and climate due to energetic electron pre...
Quantitative measurements of medium energy electron (MEE) precipitation (>40 keV) are a key to under...
The impact of energetic electron precipitation (EEP) on the chemistry of the middle atmosphere (50–9...
This thesis has been a part of the research in the Q3 group of the Birkeland Centre for Space Scienc...
Precipitating auroral and radiation belt electrons are considered an important part of the natural f...
It is well known that energetic particles can penetrate deep into the atmosphere and initiate a chai...
The atmospheric effects of precipitating electrons are not fully understood, and uncertainties are l...
Abstract Precipitating auroral and radiation belt electrons are considered an important part of the...
The atmospheric effects of precipitating electrons are not fully understood, and uncertainties are l...
The chemical imprint of the energetic electron precipitation on the atmosphere is now acknowledged a...
Energetic Electron Precipitation (EEP) from the plasma sheet and the radiation belts ionizes the pol...
High-energy electron precipitation from the radiation belts can penetrate deep into the mesosphere a...
Measurements from the Polar-Orbiting Environmental Satellite (POES) Medium Energy Proton and Electro...
Abstract One of the most popular long‐term data sets of energetic particles used in, for example, l...
Quantification of energetic electron precipitation caused by wave-particle interactions is fundament...
The influence of solar variability on the polar atmosphere and climate due to energetic electron pre...
Quantitative measurements of medium energy electron (MEE) precipitation (>40 keV) are a key to under...
The impact of energetic electron precipitation (EEP) on the chemistry of the middle atmosphere (50–9...
This thesis has been a part of the research in the Q3 group of the Birkeland Centre for Space Scienc...
Precipitating auroral and radiation belt electrons are considered an important part of the natural f...
It is well known that energetic particles can penetrate deep into the atmosphere and initiate a chai...
The atmospheric effects of precipitating electrons are not fully understood, and uncertainties are l...
Abstract Precipitating auroral and radiation belt electrons are considered an important part of the...
The atmospheric effects of precipitating electrons are not fully understood, and uncertainties are l...
The chemical imprint of the energetic electron precipitation on the atmosphere is now acknowledged a...
Energetic Electron Precipitation (EEP) from the plasma sheet and the radiation belts ionizes the pol...
High-energy electron precipitation from the radiation belts can penetrate deep into the mesosphere a...
Measurements from the Polar-Orbiting Environmental Satellite (POES) Medium Energy Proton and Electro...
Abstract One of the most popular long‐term data sets of energetic particles used in, for example, l...
Quantification of energetic electron precipitation caused by wave-particle interactions is fundament...
The influence of solar variability on the polar atmosphere and climate due to energetic electron pre...