Proton count rate measurements were obtained from the polar orbiting environmental satellites POES15 and POES16 during three solar proton events in 2001. From these data the invariant latitude of the cutoff in proton flux was determined at four local times. The satellites sample the edge of the northern polar cap at approximately 0300, 0830, 1230, and 1800 hours local time, covering the early morning, late morning, noon, and evening. During the event of 2 April the cutoff latitude for 35–70 MeV protons was almost constant, showing no more than 1.5° variation with local time. CME impacts occurred during the 24 September and 4 November events, the effects of which were to reduce the cutoff latitudes by between 5° and 8°. The equatorward displ...
We utilise hydroxyl observations from the MLS/Aura satellite instrument to study the latitudinal ext...
High energy protons accelerated during solar proton events (SPEs) can access the Earth's middle atmo...
Data from the Payload for Antimatter Matter Exploration and Light-nuclei Astrophysics (PAMELA) satel...
To accurately quantify the effect of solar proton events (SPEs) on the atmosphere requires a good es...
Solar energetic particles (SEPs), one of the main causes of particle radiation in interplanetary spa...
To accurately quantify the effect of solar proton events (SPEs) on the atmosphere requires a good es...
High energy protons accelerated during solar proton events (SPEs) can access the Earth's middle atmo...
Data from the PAMELA satellite experiment were used to measure the geomagnetic cutoff for high-energ...
Data from the polar-orbiting Solar, Anomalous, and Magnetospheric Particle Explorer (SAMPEX) satelli...
Data from the PAMELA satellite experiment were used to measure the geomagnetic cutoff for high-energ...
Data from the polar-orbiting Solar, Anomalous, and Magnetospheric Particle Explorer (SAMPEX) satelli...
Data from the polar-orbiting Solar, Anomalous, and Magnetospheric Particle Explorer (SAMPEX) satelli...
Solar energetic particles (SEPs), one of the main causes of particle radiation in interplanetary spa...
Solar energetic particles (SEPs), one of the main causes of particle radiation in interplanetary spa...
Radiation effects from solar energetic proton (SEP) events are a concern when the International Sp...
We utilise hydroxyl observations from the MLS/Aura satellite instrument to study the latitudinal ext...
High energy protons accelerated during solar proton events (SPEs) can access the Earth's middle atmo...
Data from the Payload for Antimatter Matter Exploration and Light-nuclei Astrophysics (PAMELA) satel...
To accurately quantify the effect of solar proton events (SPEs) on the atmosphere requires a good es...
Solar energetic particles (SEPs), one of the main causes of particle radiation in interplanetary spa...
To accurately quantify the effect of solar proton events (SPEs) on the atmosphere requires a good es...
High energy protons accelerated during solar proton events (SPEs) can access the Earth's middle atmo...
Data from the PAMELA satellite experiment were used to measure the geomagnetic cutoff for high-energ...
Data from the polar-orbiting Solar, Anomalous, and Magnetospheric Particle Explorer (SAMPEX) satelli...
Data from the PAMELA satellite experiment were used to measure the geomagnetic cutoff for high-energ...
Data from the polar-orbiting Solar, Anomalous, and Magnetospheric Particle Explorer (SAMPEX) satelli...
Data from the polar-orbiting Solar, Anomalous, and Magnetospheric Particle Explorer (SAMPEX) satelli...
Solar energetic particles (SEPs), one of the main causes of particle radiation in interplanetary spa...
Solar energetic particles (SEPs), one of the main causes of particle radiation in interplanetary spa...
Radiation effects from solar energetic proton (SEP) events are a concern when the International Sp...
We utilise hydroxyl observations from the MLS/Aura satellite instrument to study the latitudinal ext...
High energy protons accelerated during solar proton events (SPEs) can access the Earth's middle atmo...
Data from the Payload for Antimatter Matter Exploration and Light-nuclei Astrophysics (PAMELA) satel...