Thermoluminescence characteristics and kinetic analysis of beta irradiated Ca4LaO(BO3)3 phosphor
Abstract
Keywords
Ca4LaO(BO3)3, Thermoluminescence, Anomalous heating rate, TM-Tstop, GCD
Thanks
References
- [1] Chen R. and Pagonis V., The role of simulations in the study of thermoluminescence (TL), Radiat. Meas, 71 (2014) 8–14.
- [2] Dogan T., Thermluminescence properties of quartize rock after β-irradiation, Cumhuriyet Sci. J., 39-4 (2018) 1136-1143.
- [3] Pagonis V., Blohm L., Brengle M., Mayonado G., Woglam P., Anomalous heating rate effect in thermoluminescence intensity using a simplified semi-localized transition (SLT) model, Radiat. Meas., 51 (2013) 40–47.
- [4] Mandowski A., Semi-localized transitions model for thermoluminescence, J. Phys. D: Appl. Phys. 38 (2005) 17–21.
- [5] Mandowski A., Topology-dependent thermoluminescence kinetics, Radiat. Prot. Dosim,. 119 (2006) 23–28.
- [6] Mandowski A., Semi-localized transitions model-General formulation and classical limits, Radiat. Meas,. 43 (2008) 199–202.
- [7] Mandowski A., Bos A.J.J., Explanation of anomalous heating rate dependence of thermoluminescence in YPO4:Ce3+, Sm3+ based on the semi-localized transition (SLT) model, Radiat. Meas., 46 (2011) 1376–1379.
- [8] Kitis G., Furreta C., Prokic M., Prokic V., Kinetic parameters of some tissue equivalent thermoluminescence materials, J. Phys. D Appl. Phys. 33 (2000) 1252–1262.
- [9] Peng M., Wondraczek L., Orange-to-red emission from Bi2+ and alkaline earth codoped strontium borate phosphors for white light emitting diodes, J. Am. Ceram. Soc. 93 (2010) 1437–1442.
- [10] Kelemen A., Mesterházy D., Ignatovych M., Holovey V., Thermoluminescence characterization of newly developed Cu-doped lithium tetraborate materials, Radiat. Phys. Chem., 81 (2012) 1533–1535.