Related Experiment Videos
Feasibility study of an electret dosimetry technique
B A MacDonald1, B G Fallone, L N Ryner
1Department of Radiation Oncology, McGill University, Montreal, Canada.
Physics in Medicine and Biology
|October 1, 1992
Summary
This study introduces a novel radiation charged electret dosimeter. This device offers simultaneous charging, calibration, and field use, providing accurate air kerma measurements.
Area of Science:
- Medical Physics
- Radiation Detection and Measurement
Background:
- Traditional ionization chambers require external power for operation and readout.
- Electret-based dosimeters offer potential for passive and self-powered radiation measurement.
Purpose of the Study:
- To describe the characteristics and performance of a novel radiation charged electret dosimeter.
- To evaluate its suitability for accurate air kerma measurements in various conditions.
Main Methods:
- The dosimeter utilizes a parallel-plate ionization chamber with a polymer-coated electrode to form an electret.
- Ions generated by radiation are trapped on the electret surface, creating a self-field for subsequent measurements.
- Charge depletion, proportional to air kerma, is measured using an electrometer after irradiation.
Main Results:
- The electret dosimeter allows for simultaneous charging, calibration, field use, and in situ readout without dismantling.
- Investigated parameters include calibration, energy dependence, air kerma range, and reproducibility.
- Guard-ring effects on linearity and natural charge decay were also assessed.
Conclusions:
- The radiation charged electret dosimeter presents a promising self-powered and reusable solution for radiation monitoring.
- Its design facilitates convenient field deployment and in situ characterization.