The energetic Particle Telescope (EPT) concept and performances

Cyamukungu, Mathias;Grégoire, Ghislain
(2011) SPIE - the International Society for Optical Engineering. Proceedings — Vol. 8148, p. 814803-814801 (2011)

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  • Cyamukungu, MathiasUCLouvain
    Author
  • Grégoire, GhislainUCLouvain
    Author
Abstract
The forecast of energetic particle fluxes on time scales of hours to weeks, at a given position in space, can be achieved on the basis of experimentally determined particle lifetimes and real-time measurements of contamination-free spectra. Such elaborated measurements can be provided by the Energetic Particle Telescope (EPT) without any further post-processing. This instrument directly acquires energy spectra of electrons (0.2 – 10 MeV), protons (4 – 300 MeV), α-particles (16 – 1000 MeV) and heavier ions (up to 300 MeV/nucleon). The EPT was developed at the Center for Space Radiations – UCL-Belgium. This paper contains a brief description of the EPT concept and the definition of channels along with a more detailed presentation of the general performances based on the intrinsic detection efficiency functions and the validation test results from an Engineering Model. The EPT capabilities for space-weather related applications are highlighted by an example of electron flux forecast.
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Cyamukungu, M., & Grégoire, G. (2011). The energetic Particle Telescope (EPT) concept and performances. SPIE - the International Society for Optical Engineering. Proceedings, 8148, 814803-814801. https://doi.org/10.1117/12.892420 (Original work published 2011)