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Thermoluminescence governed by the Auger-recombination process
J. L. Lawless,
R. Chen
*
, V. Pagonis
*
Corresponding author for this work
School of Physics and Astronomy
Redwood Scientific Inc.
McDaniel College
Research output
:
Contribution to journal
›
Article
›
peer-review
3
Scopus citations
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Keyphrases
Thermoluminescence
100%
Recombination Mechanism
100%
Auger Recombination
100%
Luminescence
33%
Recombination
33%
Third Order
33%
Effective Activation Energy
33%
Low Temperature
16%
Feasible Set
16%
Relevant Sets
16%
Kinetic Equation
16%
Equation Set
16%
Conduction Band Electron
16%
Recombination Centers
16%
Two-electron
16%
Law of Mass Action
16%
Frequency Factor
16%
Activation Rate
16%
Energy Factor
16%
Asymmetric Peak
16%
Differential Equations Set
16%
Free Electron Concentration
16%
Simultaneous Differential Equations
16%
Peak Shape Method
16%
Engineering
Auger Recombination
100%
Thermoluminescence
100%
Activation Energy
33%
Low-Temperature
16%
Energy Engineering
16%
Free Electron
16%
Conduction Band
16%
Recombination Centre
16%
Peak Shape
16%
Kinetic Equation
16%
Feasible Set
16%
Electron Concentration
16%
Governing Differential Equation
16%
Energy Gain
16%
Law of Mass Action
16%