Published February 1, 1993 | Version v1
Journal article

Improvement of mass resolution of cosmic ray nuclei using a ΔExE Si detector telescope

  • 1. Faculty of General Education, Ehime Univ., Matsuyama (Japan)
  • 2. Science and Engineering Research Lab., Waseda Univ., Shinjuku, Tokyo (Japan)
  • 3. Dept. of Physics, Rikkyo Univ., Toshima, Tokyo (Japan)
  • 4. Faculty of Engineering, Tamagawa Univ., Machida, Tokyo (Japan)
  • 5. Space Science Lab., Univ. California, Berkeley, CA (United States)

Description

Using 5-in.-diameter Si(Li) detectors with a detector thickness of 1, 2 and 3 mm combined with 62 mmx62 mm position-sensitive Si detectors an excellent isotope telescope has been constructed for the Geotail mission. The performance of the telescope and the individual detectors has been investigated using 56Fe beams with energies between 430 and 696 MeV/n. The nonuniformity of the detector thickness as measured by exposing the detectors to a monochromatic Fe beam is 0.44% for 1 mm thick detectors, 0.54% for 2 mm thick detectors and 0.15% for 3 mm thick detectors. The secondary isotopes of Al through Fe produced by 430 MeV/n 56Fe in a polyethylene target were clearly resolved by the telescope. The measured mass resolution for Si, Ca and Mn were 0.36 amu, 0.42 amu and 0.44 amu in FWHM, respectively. The telescope has the following two key features: An excellent resolution (better than 0.5 amu) and an exceptionally high sensitivity (SΩ=43 cm2 sr) for a broad range of species from He through Ni with energies between 2.4 and 210 MeV/n. (orig.)

Additional details

Publishing Information

Journal Title
Nuclear Instruments and Methods in Physics Research. Section A
Journal Volume
325
Journal Issue
1/2
Journal Page Range
p. 335-342.
ISSN
0168-9002
CODEN
NIMAER