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1.
Rev Sci Instrum ; 85(8): 083304, 2014 Aug.
Article in English | MEDLINE | ID: mdl-25173259

ABSTRACT

We report the design of a millimeter-sized parallel plate free-air ionization chamber (IC) aimed at determining the absolute air kerma rate of an ultra-soft X-ray beam (E = 1.5 keV). The size of the IC was determined so that the measurement volume satisfies the condition of charged-particle equilibrium. The correction factors necessary to properly measure the absolute kerma using the IC have been established. Particular attention was given to the determination of the effective mean energy for the 1.5 keV photons using the PENELOPE code. Other correction factors were determined by means of computer simulation (COMSOL™ and FLUKA). Measurements of air kerma rates under specific operating parameters of the lab-bench X-ray source have been performed at various distances from that source and compared to Monte Carlo calculations. We show that the developed ionization chamber makes it possible to determine accurate photon fluence rates in routine work and will constitute substantial time-savings for future radiobiological experiments based on the use of ultra-soft X-rays.


Subject(s)
Models, Theoretical , Radiometry , Radiometry/instrumentation , Radiometry/methods , X-Rays
2.
Radiat Prot Dosimetry ; 110(1-4): 333-6, 2004.
Article in English | MEDLINE | ID: mdl-15353669

ABSTRACT

Imaging plate (IP) radiation detectors are widely used in industrial radiography, medical imagery and autoradiography. When an IP is exposed to ionising radiation, some of the energy is absorbed to form a latent image. The energy stored, which is proportional to the dose received, can be liberated by a selective optical stimulation and collected to reconstitute the distribution of the ionising radiation on the IP. In this work, IPs for use in fast-neutron measurements are characterised. The response of our IP dosemeters in conjunction with their reading system was found to be linear in dose between 75 microSv and 10 mSv. This performance is compared with those of dosemeters based on the plastic track detectors PN3 and CR-39.


Subject(s)
Fast Neutrons , Film Dosimetry/instrumentation , Linear Energy Transfer , Occupational Exposure/analysis , Radiation Protection/instrumentation , Radioisotopes/analysis , Body Burden , Environmental Exposure/analysis , Equipment Design , Equipment Failure Analysis/methods , Film Dosimetry/methods , Radiation Dosage , Radiation Protection/methods , Relative Biological Effectiveness , Reproducibility of Results , Scattering, Radiation , Sensitivity and Specificity
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