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Radiation Effects and Defects in Solids
Incorporating Plasma Science and Plasma Technology
Volume 160, 2005 - Issue 5
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Original Articles

Thermoluminescence characteristics of hydrogenated amorphous zirconia

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Pages 181-186 | Received 01 Jun 2005, Accepted 01 Aug 2005, Published online: 19 Aug 2006

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T. Rivera, J. Azorin, M. Barrera & A. M. Soto. (2007) Nanostructural processing of advanced thermoluminescent materials. Radiation Effects and Defects in Solids 162:10-11, pages 731-736.
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Articles from other publishers (6)

Kanchan Upadhyay, Raunak Kumar Tamrakar & Anupama Asthana. (2019) Investigation of a thermoluminescence response and trapping parameters and theoretical model to explain concentration quenching for $$\hbox {Yb}^{3+}$$-doped $$\hbox {ZrO}_{{2}}$$ phosphors under UV exposure. Bulletin of Materials Science 42:5.
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V. Correcher, J. Garcia-Guinea & Y. Rodriguez-Lazcano. (2018) Thermally stimulated luminescence of a natural layered double hydroxide. Journal of Thermal Analysis and Calorimetry 133:3, pages 1253-1257.
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G. Villa-Sánchez, D. Mendoza-Anaya, M. Eufemia Fernández-García, L. Escobar-Alarcón, O. Olea-Mejía & P.R. González-Martínez. (2014) Co nanoparticle effects on the thermoluminescent signal induced by UV and gamma radiation in ZrO2 powders. Optical Materials 36:7, pages 1219-1226.
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G. Villa-Sánchez, D. Mendoza-Anaya, G. Mondragón-Galicia, R. Pérez-Hernández, O. Olea-Mejía & P.R. González-Martínez. (2014) Thermoluminescence response induced by UV radiation in Eu-doped zirconia nanopowders. Radiation Physics and Chemistry 97, pages 118-125.
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L.L. Palacios, T. Rivera, J. Roman, J. Azorín & E. Gaona. (2012) Thermoluminescence of zirconium oxide nanostructured to mammography X-ray beams. Applied Radiation and Isotopes 70:7, pages 1400-1402.
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T. RIVERA, G. KITIS, J. AZORÍN & C. FURETTA. (2011) DECONVOLUTION METHOD ON OSL CURVES FROM ZrO 2 IRRADIATED BY BETA AND UV RADIATIONS . Modern Physics Letters B 23:05, pages 699-707.
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