• DocumentCode
    1467820
  • Title

    Reflectivity Spectra for Commonly Used Reflectors

  • Author

    Janecek, Martin

  • Author_Institution
    Lawrence Berkeley Nat. Lab., Berkeley, CA, USA
  • Volume
    59
  • Issue
    3
  • fYear
    2012
  • fDate
    6/1/2012 12:00:00 AM
  • Firstpage
    490
  • Lastpage
    497
  • Abstract
    Monte Carlo simulations play an important role in developing and evaluating the performance of radiation detection systems. To accurately model a reflector in an optical Monte Carlo simulation, the reflector´s spectral response has to be known. We have measured the reflection coefficient for many commonly used reflectors for wavelengths from 250 nm to 800 nm. The reflectors were also screened for fluorescence and angular distribution changes with wavelength. The reflectors examined in this work include several polytetrafluoroethylene (PTFE) reflectors, Spectralon, GORE diffuse reflector, titanium dioxide paint, magnesium oxide, nitrocellulose filter paper, Tyvek paper, Lumirror, Melinex, ESR films, and aluminum foil. All PTFE films exhibited decreasing reflectivity with longer wavelengths due to transmission. To achieve >;0.95 reflectivity in the 380 to 500 nm range, the PTFE films have to be at least 0.5 mm thick-nitrocellulose is a good alternative if a thin diffuse reflector is needed. Several of the reflectors have sharp declines in reflectivity below a cut-off wavelength, including TiO2 (420 nm), ESR film (395 nm), nitrocellulose (330 nm), Lumirror (325 nm), and Melinex (325 nm). PTFE-like reflectors were the only examined reflectors that had reflectivity above 0.90 for wavelengths below 300 nm. Lumirror, Melinex, and ESR film exhibited fluorescence. Lumirror and Melinex are excited by wavelengths between 320 and 420 nm and have their emission peaks located at 440 nm, while ESR film is excited by wavelengths below 400 nm and the emission peak is located at 430 nm. Lumirror and Melinex also exhibited changing angular distributions with wavelength.
  • Keywords
    Monte Carlo methods; fluorescence; optical elements; radiation detection; reflectivity; solid scintillation detectors; ESR films; GORE diffuse reflector; Lumirror; Melinex; PTFE films; Tyvek paper; aluminum foil; angular distribution; fluorescence; magnesium oxide; nitrocellulose filter paper; optical Monte Carlo simulation; polytetrafluoroethylene reflectors; radiation detection systems; reflection coefficient; reflectivity spectra; scintillating crystals; spectralon; titanium dioxide paint; wavelength 250 nm to 800 nm; Adaptive optics; Instruments; Lenses; Optical reflection; Photodetectors; Sea measurements; Wavelength measurement; Fluorescence; Lambertian reflection; reflection coefficient; specular reflection;
  • fLanguage
    English
  • Journal_Title
    Nuclear Science, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9499
  • Type

    jour

  • DOI
    10.1109/TNS.2012.2183385
  • Filename
    6168236