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Quantitative Recombination and Transport Properties in Silicon from Dynamic Luminescence (2014)

Quantitative Recombination and Transport Properties in Silicon from Dynamic Luminescence

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"Quantitative Recombination and Transport Properties in Silicon from Dynamic Luminescence" by Johannes Giesecke is a physics book focused on Devices & Sensors. Best for students, educators, and scientifically curious readers.

Harmonically modulated luminescence combines the advantages of highly sensitive luminescence metrology with an immediate dynamic access to carrier lifetime in semiconductors at a minimum of required a priori information. The present work covers theoretical, conceptual, and experimental advances of the harmonically modulated luminescence technique. Theoretical constraints of dynamic carrier lifetime techniques are rigorously elaborated, including the proof of their differential nature and their characteristics at nonuniform spatial distributions of recombination rate. The pathway toward a unified, reliable, and versatile harmonically modulated carrier lifetime metrology is delineated - covering the entire solar cell production chain from bare ingots to finished solar cells. Accurate access to miscellaneous relevant recombination and transport properties via harmonically modulated luminescence is demonstrated and experimentally validated, embracing injection-dependent carrier lifetimes at extremely low injection conditions, a spatially resolved carrier lifetime calibration of luminescence images, and accurate approaches to both net dopant concentration and minority carrier mobility.

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Best For: Researchers and engineers working on semiconductor characterization and solar cell production.
Focus: Theoretical and experimental advances in harmonically modulated luminescence for dynamic carrier lifetime measurement in silicon.
Covers: Theory of dynamic carrier lifetime techniques, spatial effects on recombination rate, calibration of luminescence imaging, and measurement of dopant concentration and carrier mobility.
Why It Matters: Provides a unified and reliable method to accurately measure recombination and transport properties critical for optimizing silicon-based solar cells and semiconductor devices.

"Quantitative Recombination and Transport Properties in Silicon from Dynamic Luminescence" by Johannes Giesecke is a physics book focused on Devices & Sensors. Best for students, educators, and scientifically curious readers.

Topic: Devices & Sensors

Author: Johannes Giesecke

Who this is for:

  • Physics students
  • Science-minded readers
  • Readers building technical understanding

Why this book matters: It provides structured coverage of physics concepts in a way that supports deeper understanding and continued study.

Harmonically modulated luminescence combines the advantages of highly sensitive luminescence metrology with an immediate dynamic access to carrier lifetime in semiconductors at a minimum of required a priori information. The present work covers theoretical, conceptual, and experimental advances of the harmonically modulated luminescence technique. Theoretical constraints of dynamic carrier lifetime techniques are rigorously elaborated, including the proof of their differential nature and their characteristics at nonuniform spatial distributions of recombination rate. The pathway toward a unified, reliable, and versatile harmonically modulated carrier lifetime metrology is delineated - covering the entire solar cell production chain from bare ingots to finished solar cells. Accurate access to miscellaneous relevant recombination and transport properties via harmonically modulated luminescence is demonstrated and experimentally validated, embracing injection-dependent carrier lifetimes at extremely low injection conditions, a spatially resolved carrier lifetime calibration of luminescence images, and accurate approaches to both net dopant concentration and minority carrier mobility.

AuthorJohannes Giesecke
PublisherSpringer
Published2014-06-20
ISBN-139783319061566
BindingHardcover
Pages284
LanguageEnglish
SubjectsTechnology & Engineering
TopicDevices & Sensors
SeriesSpringer Theses

Format: Hardcover

Length: 284 pages

Language: English

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