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Quantum-Dot-Based Semiconductor Optical Amplifiers for O-Band Optical Communication (2017)

Quantum-Dot-Based Semiconductor Optical Amplifiers for O-Band Optical Communication

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"Quantum-Dot-Based Semiconductor Optical Amplifiers for O-Band Optical Communication" by Holger Schmeckebier is a physics book focused on Devices & Sensors. Best for students, educators, and scientifically curious readers.

This thesis examines the unique properties of gallium arsenide (GaAs)-based quantum-dot semiconductor optical amplifiers for optical communication networks, introducing readers to their fundamentals, basic parameters and manifold applications. The static and dynamic properties of these amplifiers are discussed extensively in comparison to conventional, non quantum-dot based amplifiers, and their unique advantages are elaborated on, such as the fast carrier dynamics and the decoupling of gain and phase dynamics. In addition to diverse amplification scenarios involving single and multiple high symbol rate amplitude and phase-coded data signals, wide-range wavelength conversion as a key functionality for optical signal processing is investigated and discussed in detail. Furthermore, two novel device concepts are developed and demonstrated that have the potential to significantly simplify network architectures, reducing the investment and maintenance costs as well as the energy consumption of future networks.

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Best For: Researchers and engineers working on optical communication technologies and semiconductor devices.
Focus: Fundamental properties, performance comparison, and applications of GaAs-based quantum-dot semiconductor optical amplifiers.
Covers: Static and dynamic characteristics, amplification scenarios, wavelength conversion, and novel device concepts for network simplification.
Why It Matters: Offers insights into advanced optical amplifiers that can improve signal processing and reduce costs and energy use in future optical communication networks.

"Quantum-Dot-Based Semiconductor Optical Amplifiers for O-Band Optical Communication" by Holger Schmeckebier is a physics book focused on Devices & Sensors. Best for students, educators, and scientifically curious readers.

Topic: Devices & Sensors

Author: Holger Schmeckebier

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.

This thesis examines the unique properties of gallium arsenide (GaAs)-based quantum-dot semiconductor optical amplifiers for optical communication networks, introducing readers to their fundamentals, basic parameters and manifold applications. The static and dynamic properties of these amplifiers are discussed extensively in comparison to conventional, non quantum-dot based amplifiers, and their unique advantages are elaborated on, such as the fast carrier dynamics and the decoupling of gain and phase dynamics. In addition to diverse amplification scenarios involving single and multiple high symbol rate amplitude and phase-coded data signals, wide-range wavelength conversion as a key functionality for optical signal processing is investigated and discussed in detail. Furthermore, two novel device concepts are developed and demonstrated that have the potential to significantly simplify network architectures, reducing the investment and maintenance costs as well as the energy consumption of future networks.
AuthorHolger Schmeckebier
PublisherSpringer
Published2016-10-31
ISBN-139783319442747
BindingHardcover
LanguageEnglish
SubjectsTechnology & Engineering
TopicDevices & Sensors
SeriesSpringer Theses

Format: Hardcover

Language: English

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