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)
Files
No attached file found for this publication.
Details
Authors
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.
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)