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Published on: June 27, 2022
Dosimetric response for crystalline and nanostructured aluminium oxide to a high-current pulse electron beam
1Ural Federal University, 19 Mira St., Ekaterinburg 620002, Russia s.v.nikiforov@urfu.ru.
Abstract:
The main thermoluminescent (TL) and dosimetric properties of the detectors based on anion-defective crystalline and nanostructured aluminium oxide after exposure to a high-current pulse electron beam are studied. TL peaks associated with deep-trapping centres are registered. It is shown that the use of deep-trap TL at 200-600°С allows registering absorbed doses up to 750 kGy for single-crystalline detectors and those up to 6 kGy for nanostructured ones. A wide range of the doses registered, high reproducibility of the TL signal and low fading contribute to a possibility of using single-crystalline and nanostructured aluminium oxide for the dosimetry of high-current pulse electron beams.

