Magnetospheric substorms drive energetic electron precipitation into the Earth's atmosphere. We use the output from a substorm model to describe electron precipitation forcing of the atmosphere during an active substorm period in April–May 2007. We provide the first estimate of substorm impact on the neutral composition of the polar middle atmosphere. Model simulations show that the enhanced ionization from a series of substorms leads to an estimated ozone loss of 5–50% in the mesospheric column depending on season. This is similar in scale to small to medium solar proton events (SPEs). This effect on polar ozone balance is potentially more important on long time scales (months to years) than the impulsive but sporadic (few SPE/year versus ...
Abstract Terrestrial lightning frequently serves as a loss mechanism for energetic electrons in the...
In 2008 a sequence of geomagnetic storms occurred triggered by high-speed solar wind streams from co...
Energetic particle precipitation (EPP) affects the chemistry of the polar middle atmosphere by produ...
Magnetospheric substorms drive energetic electron precipitation into the Earth's atmosphere. We use ...
International audience[1] Geomagnetic storms triggered by coronal mass ejections and high‐speed sola...
Recent simulation studies have provided evidence that a pulsating aurora (PsA) associated with high-...
Energetic particle precipitation leads to ionization in the Earth's atmosphere, initiating the forma...
The injection, and subsequent precipitation, of 20 to 300 keV electrons during substorms is modeled ...
The injection, and subsequent precipitation, of 20 to 300 keV electrons during substorms is modeled ...
Relativistic electron microbursts are short-duration, high-energy precipitation events that are an i...
Energetic particle precipitation leads to ionization in the Earth\u27s atmosphere, initiating the fo...
Observations have shown that mesospheric hydroxyl (OH) is affected by energetic electron precipitati...
One of the key challenges in polar middle atmosphere research is to quantify the total forcing by en...
Energetic electrons are deposited into the atmosphere from Earth's inner magnetosphere, resulting in...
The influence of solar variability on the polar atmosphere and climate due to energetic electron pre...
Abstract Terrestrial lightning frequently serves as a loss mechanism for energetic electrons in the...
In 2008 a sequence of geomagnetic storms occurred triggered by high-speed solar wind streams from co...
Energetic particle precipitation (EPP) affects the chemistry of the polar middle atmosphere by produ...
Magnetospheric substorms drive energetic electron precipitation into the Earth's atmosphere. We use ...
International audience[1] Geomagnetic storms triggered by coronal mass ejections and high‐speed sola...
Recent simulation studies have provided evidence that a pulsating aurora (PsA) associated with high-...
Energetic particle precipitation leads to ionization in the Earth's atmosphere, initiating the forma...
The injection, and subsequent precipitation, of 20 to 300 keV electrons during substorms is modeled ...
The injection, and subsequent precipitation, of 20 to 300 keV electrons during substorms is modeled ...
Relativistic electron microbursts are short-duration, high-energy precipitation events that are an i...
Energetic particle precipitation leads to ionization in the Earth\u27s atmosphere, initiating the fo...
Observations have shown that mesospheric hydroxyl (OH) is affected by energetic electron precipitati...
One of the key challenges in polar middle atmosphere research is to quantify the total forcing by en...
Energetic electrons are deposited into the atmosphere from Earth's inner magnetosphere, resulting in...
The influence of solar variability on the polar atmosphere and climate due to energetic electron pre...
Abstract Terrestrial lightning frequently serves as a loss mechanism for energetic electrons in the...
In 2008 a sequence of geomagnetic storms occurred triggered by high-speed solar wind streams from co...
Energetic particle precipitation (EPP) affects the chemistry of the polar middle atmosphere by produ...