DocumentCode :
926719
Title :
HILT: a heavy ion large area proportional counter telescope for solar and anomalous cosmic rays
Author :
Klecker, B. ; Hovestadt, D. ; Scholer, M. ; Arbinger, H. ; Ertl, M. ; Kastele, H. ; Künneth, E. ; Laeverenz, P. ; Seidenschwang, E. ; Blake, J.B. ; Katz, N. ; Mabry, D.
Author_Institution :
Max-Planck-Inst. fuer Extraterrestrische Phys., Garching bei Muenchen, Germany
Volume :
31
Issue :
3
fYear :
1993
fDate :
5/1/1993 12:00:00 AM
Firstpage :
542
Lastpage :
548
Abstract :
The HILT sensor has been designed to measure heavy ion elemental abundances, energy spectra, and direction of incidence in the mass range from helium to iron and in the energy range 4-250 MeV/nucleon. With its large geometric factor of 60 cm2 sr the sensor is optimized to provide compositional and spectral measurements for low-intensity cosmic rays, i.e., for small solar energetic particle events and for the anomalous component of cosmic rays. The instrument combines a large-area ion-drift-chamber-proportional-counter system with two arrays of 16 Li-drifted solid state detectors and 16 CsI crystals. The multi-dE /dx-E technique provides a low-background mass and energy determination. The sensor also measures particle direction. By combining these measurements with the information on the spacecraft position and attitude in the low-altitude polar orbit, it will be possible to infer the ionic charge of the ions from the local cutoff of the Earth´s magnetic field. The ionic charge in this energy range is of particular interest because it provides unique clues to the origin of these particles and has not been investigated systematically so far
Keywords :
cosmic ray apparatus; cosmic ray composition; cosmic ray energy spectra; position sensitive particle detectors; proportional counters; semiconductor counters; solar cosmic ray particles; 4 to 250 MeV; CsI; HILT; Li; Li-drifted solid state detectors; SAMPEX position sensitive detectors; Sun; anomalous cosmic rays; direction of incidence; elemental abundances; energy spectra; geometric factor; heavy ion large area proportional counter telescope; ion-drift-chamber-proportional-counter system; ionic charge; local cutoff; low-intensity cosmic rays; multi-dE/dx-E technique; solar cosmic rays; Cosmic rays; Counting circuits; Energy measurement; Extraterrestrial measurements; Helium; Iron; Magnetic field measurement; Nuclear measurements; Particle measurements; Telescopes;
fLanguage :
English
Journal_Title :
Geoscience and Remote Sensing, IEEE Transactions on
Publisher :
ieee
ISSN :
0196-2892
Type :
jour
DOI :
10.1109/36.225520
Filename :
225520
Link To Document :
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