Skip to product information
Nonlinear and Nonequilibrium Dynamics of Quantum-Dot Optoelectronic Devices (2015)

Nonlinear and Nonequilibrium Dynamics of Quantum-Dot Optoelectronic Devices

$109.99
Shipping calculated at checkout.
  • Authorized Dealer
  • Ships within 1 business day
  • Free 30-Day Returns
  • Secure Checkout via Shopify Payments
Details

"Nonlinear and Nonequilibrium Dynamics of Quantum-Dot Optoelectronic Devices" by Benjamin Lingnau is a physics book focused on Light & Optics. Best for students, educators, and scientifically curious readers.

This thesis sheds light on the unique dynamics of optoelectronic devices based on semiconductor quantum-dots. The complex scattering processes involved in filling the optically active quantum-dot states and the presence of charge-carrier nonequilibrium conditions are identified as sources for the distinct dynamical behavior of quantum-dot based devices. Comprehensive theoretical models, which allow for an accurate description of such devices, are presented and applied to recent experimental observations. The low sensitivity of quantum-dot lasers to optical perturbations is directly attributed to their unique charge-carrier dynamics and amplitude-phase-coupling, which is found not to be accurately described by conventional approaches. The potential of quantum-dot semiconductor optical amplifiers for novel applications such as simultaneous multi-state amplification, ultra-wide wavelength conversion, and coherent pulse shaping is investigated. The scattering mechanisms and the unique electronic structure of semiconductor quantum-dots are found to make such devices prime candidates for the implementation of next-generation optoelectronic applications, which could significantly simplify optical telecommunication networks and open up novel high-speed data transmission schemes.

Materials + Care

We prioritize quality in selecting the materials for our items, choosing premium fabrics and finishings that ensure durability, comfort, and timeless appeal.

Shipping + Returns

We strive to process and ship all orders in a timely manner, working diligently to ensure that your items are on their way to you as soon as possible.

Best For: Researchers and graduate students in optoelectronics and semiconductor physics
Focus: Theoretical modeling of nonlinear and nonequilibrium dynamics in quantum-dot optoelectronic devices
Covers: Scattering processes in quantum-dot states and charge-carrier nonequilibrium effects influencing device behavior
Why It Matters: Provides detailed understanding of the unique dynamical properties of quantum-dot devices, important for advancing optoelectronic technology

"Nonlinear and Nonequilibrium Dynamics of Quantum-Dot Optoelectronic Devices" by Benjamin Lingnau is a physics book focused on Light & Optics. Best for students, educators, and scientifically curious readers.

Topic: Light & Optics

Author: Benjamin Lingnau

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 sheds light on the unique dynamics of optoelectronic devices based on semiconductor quantum-dots. The complex scattering processes involved in filling the optically active quantum-dot states and the presence of charge-carrier nonequilibrium conditions are identified as sources for the distinct dynamical behavior of quantum-dot based devices. Comprehensive theoretical models, which allow for an accurate description of such devices, are presented and applied to recent experimental observations. The low sensitivity of quantum-dot lasers to optical perturbations is directly attributed to their unique charge-carrier dynamics and amplitude-phase-coupling, which is found not to be accurately described by conventional approaches. The potential of quantum-dot semiconductor optical amplifiers for novel applications such as simultaneous multi-state amplification, ultra-wide wavelength conversion, and coherent pulse shaping is investigated. The scattering mechanisms and the unique electronic structure of semiconductor quantum-dots are found to make such devices prime candidates for the implementation of next-generation optoelectronic applications, which could significantly simplify optical telecommunication networks and open up novel high-speed data transmission schemes.

AuthorBenjamin Lingnau
PublisherSpringer
Published2015-12-18
ISBN-139783319258034
BindingHardcover
LanguageEnglish
SubjectsScience
TopicLight & Optics
SeriesSpringer Theses

Format: Hardcover

Language: English

Shop by collection

You might also like...