Effect of magnetic field strength on plastic scintillation detector response

F. Therriault-Proulx, Z. Wen, G. Ibbott, S. Beddar

Research output: Contribution to journalArticlepeer-review

21 Scopus citations

Abstract

Purpose: To characterize the response of plastic scintillation detectors (PSDs) to high-energy photon radiation as a function of magnetic field strength. Materials and methods: PSDs were placed inside a plastic phantom held at the center point between 2 magnets and irradiated using a 6-MV photon beam from a linear accelerator. The magnetic field was varied from 0 T to 1.5 T by 0.3-T increments. The light emission and stem-effect-corrected response as a function of magnetic field strength were obtained for both a commercial PSD (Exradin W1, Standard Imaging) and an in-house hyperspectral PSD. Spectral signatures were obtained for the in-house PSD, and light emission from a bare fiber was also measured. Results: Light emission increased as magnetic field strength increased for all detectors tested. The tested PSDs exhibited an increase in light intensity of 10%–20%, mostly owing to the increase in Cerenkov light produced within and transmitted along the optical fiber. When corrected for stem effects, the increase in PSD response went down to 2.4% for both detectors. This most likely represents the change in the inherent dose deposition within the phantom. Conclusion: PSDs with a suitable stem-effect removal approach were less dependent on magnetic field strength and had better water equivalence than did ion chambers tested in previous studies. PSDs therefore show great promise for use in both quality assurance and in-vivo dosimetry applications in a magnetic field environment.

Original languageEnglish (US)
Pages (from-to)10-13
Number of pages4
JournalRadiation Measurements
Volume116
DOIs
StatePublished - Sep 2018

Keywords

  • Cerenkov effect
  • Dosimetry
  • MR-Linac
  • Magnetic-field
  • PSD
  • Scintillation

ASJC Scopus subject areas

  • Radiation
  • Instrumentation

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