Radiation Dosimetry Phosphors

Radiation Dosimetry Phosphors

Synthesis, Mechanisms, Properties and Analysis

Kitis, George; Nayar, Vinit; Dhoble, Sanjay J.; Chopra, Vibha; Poelman, Dirk; Swart, Hendrik C.

Elsevier Science Publishing Co Inc

05/2022

544

Mole

Inglês

9780323854719

15 a 20 dias

1000

Descrição não disponível.
1. Introduction to luminescence and radiation dosimetry techniques
2. Principles, mechanisms and models of radiation dosimetry
3. An overview of phosphors for TL radiation dosimetry
4. Analysis of the methods for the determination of the trapping parameters for the TL glow curves of the dosimetric phosphors
5. Mathematical theory of the methods used to evaluate the physical parameters of electron trapping levels - application examples
6. Understanding OSL Radiation Dosimetery and Its Applications
7. Analysis of complex TL, OSL, and other stimulated luminescence curves using analytical expressions
8. Low Z phosphors for radiation dosimetry
9. Thermoluminescent materials for high energy dosimetry
10. Nanophosphors for radiation dosimetry
11. Thermoluminescence Radiation Dosimetry in Sulphate-based Phosphors
12. Thermoluminescence glow curve analysis and proposed model for Eu3+ activated MY2O4 (M=Ba, Ca, Sr) phosphors for dosimetric application
13. Thermoluminescence Study of Pure and Doped MgAl2O4 Crystals
14. Advances in the rare-earth doped CaSO4 phosphors for thermoluminescence dosimetry
15. Dosimetric properties of dysprosium doped magnesium borate glass with calcium modifier by gamma irradiation
16. Ion Beam dosimetry: An emerging field
17. Lyoluminescence: Recent developments and dosimetric applications
18. Synthesis of phosphors and fabrication of devices for mechanoluminescence dosimetry
19. Biological Effects of Radiation
20. New challenges in radiation dosimetry and possible materials
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dosimeter; dosimetry; radiation dosimetry; phosphors; optical materials; luminescence; thermoluminescence; mechanoluminescence; Lyoluminescence; Optically Stimulated luminescence; Radiophotoluminescence; Scintillation; Trapping parameters