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Stephen W. S. McKeever
A Course in Luminescence Measurements and Analyses for Radiation Dosimetry
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A Course in Luminescence Measurements and Analyses for Radiation Dosimetry
Страница 3
Страница 4
Contents
List of Illustrations
List of Tables
Guide
Pages
Preface
Acknowledgments
Disclaimer
About the Companion Website
Part I Theory, Models, and Simulations
1 Introduction
1.1 How Did We Get Here?
Exercise 1.1
1.2 Introductory Concepts for TL, OSL, and RPL 1.2.1 Equilibrium and Metastable States
1.2.2 Fermi-Dirac Statistics
1.2.3 Related Processes
1.3 Brief Overview of Modern Applications in Radiation Dosimetry
1.3.1 Personal Dosimetry
1.3.2 Medical Dosimetry
1.3.3 Space Dosimetry
1.3.4 Retrospective Dosimetry
1.3.5 Environmental Dosimetry
Exercise 1.2
1.4 Bibliography of Luminescence Dosimetry Applications
2 Defects and Their Relation to Luminescence
2.1 Defects in Solids 2.1.1 Point Defects
2.1.2 Extended Defects
2.1.3 Non-Crystalline Materials
2.2 Trapping, Detrapping, and Recombination Processes 2.2.1 Excitation Probabilities
2.2.1.1
Thermal Excitation
Exercise 2.1
2.2.1.2 Optical Excitation
Exercise 2.2
2.2.2 Trapping and Recombination Processes
Exercise 2.3
Notes
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