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The thermal neutron response of miniature silicon carbide semiconductor detectors

  • A.R. Dulloo
  • , F.H. Ruddy
  • , J.G. Seidel
  • , J.M. Adams
  • , J.S. Nico
  • , D.M. Gilliam

Research output: Contribution to journalArticlepeer-review

87 Scopus citations

Abstract

Neutron response calibrations have been performed for miniature SiC semiconductor detectors based on a Schottky diode design in neutron fields maintained at the National Institute of Standards and Technology (NIST). The SiC diodes detect neutrons via neutron-induced charged particles (tritons) produced by the 6Li(n,α)3H reaction. The neutron response was calibrated at fluence rates from 1.76 × 104 to 3.59 × 1010cm-2s-1 in NIST neutron fields. The maximum deviation from linearity of the fit of the neutron response of the SiC detectors to the NIST-measured fluence rates is much less than 5%, which is the estimated uncertainty in the measured fluence rates. A direct comparison of the SiC count rates to count rates obtained with a NIST double fission chamber over limited ranges where the detector positions and configurations remain unchanged shows a relative precision of ±0.6%. In a separate set of calibrations, a SiC neutron detector that had been previously irradiated with a fast (E >1 MeV) neutron fluence of 1.3×1016cm-2 was found to have an absolute neutron fluence rate response that was indistinguishable from that of a previously unirradiated detector. © 2002 Elsevier Science B.V. All rights reserved.
Original languageEnglish
Pages (from-to)415 – 423
JournalNuclear Instruments and Methods in Physics Research, Section A: Accelerators, Spectrometers, Detectors and Associated Equipment
Volume498
Issue number1-3
Early online dateFeb 11 2003
DOIs
StatePublished - Feb 11 2003
Externally publishedYes

Keywords

  • Calibration
  • Charged particles
  • Fission reactions
  • Irradiation
  • Schottky barrier diodes
  • Silicon carbide
  • Fluence rates
  • Radiation sensors
  • Neutron detectors

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