Published April 2018 | Version v1
Journal article

BaSO4:Eu as an energy independent thermoluminescent radiation dosimeter for gamma rays and C6+ ion beam

  • 1. Department of Physics, Sri Venkateswara College, University of Delhi, Benito Juarez Road, Dhaula Kuan, New Delhi 110021 (India)
  • 2. Medical Physics Unit, IRCH, AIIMS, New Delhi 110029 (India)
  • 3. Inter-University Accelerator Centre, Aruna Asaf Ali Marg, New Delhi 110067 (India)

Description

Highlights: • Energy dependence study of Nanocrystalline BaSO4:Eu is conducted. • Nanocrystalline BaSO4:Eu displays energy independence for gamma radiation. • The nanophosphor also exhibits energy independence at lower doses of C6+ ion beam. • At higher doses, the material shows high sensitivity to higher energy of the beam. - Abstract: BaSO4:Eu nanophosphor is delicately optimized by varying the concentration of the impurity element and compared to the commercially available thermoluminescent dosimeter (TLD) LiF:Mg,Ti (TLD-100) and by extension also to CaSO4:Dy (TLD-900) so as to achieve its maximum thermoluminescence (TL) sensitivity. Further, the energy dependence property of this barite nanophosphor is also explored at length by exposing the phosphor with 1.25 MeV of Co-60, 0.662 MeV of Cs-137, 85 MeV and 65 MeV of Carbon ion beams. Various batches of the phosphor at hand (with impurity concentrations being 0.05, 0.10, 0.20, 0.50 and 1.00 mol%) are prepared by the chemical co-precipitation method out of which BaSO4:Eu with 0.20 mol% Eu exhibits the maximum TL sensitivity. Further, the optimized nanophosphor exhibits a whopping 28.52 times higher TL sensitivity than the commercially available TLD-100 and 1.426 times higher sensitivity than TLD-900, a noteworthy linear response curve for an exceptionally wide range of doses i.e. 10 Gy to 2 kGy and a simple glow curve structure. Furthermore, when the newly optimized nanophosphor is exposed with two different energies of gamma radiations, namely 1.25 MeV of Co-60 (dose range- 10–300 Gy) and 0.662 MeV of Cs-137 (dose range- 1–300 Gy), it is observed that the shape and structure of the glow curves remain remarkably similar for different energies of radiation while the TL response curve shows little to no variation. When exposed to different energies of carbon ion beam BaSO4:Eu displays energy independence at lower doses i.e. from 6.059 to 14.497 kGy. Finally, even though energy independence is lost at higher doses, the material shows high sensitivity to higher energy (85 MeV) of carbon beam compared to the lower energy (65 MeV of C6+) and saturation is apparent only after 121.199 kGy. Therefore the present nanophosphor displays potential as an energy independent TLD.

Availability note (English)

Available from http://dx.doi.org/10.1016/j.radphyschem.2017.12.019

Additional details

Identifiers

DOI
10.1016/j.radphyschem.2017.12.019;
PII
S0969806X17306746;

Publishing Information

Journal Title
Radiation Physics and Chemistry (1993)
Journal Volume
145
Journal Page Range
p. 64-73
ISSN
0969-806X
CODEN
RPCHDM

Optional Information

Notes
© 2017 Elsevier Ltd. All rights reserved.