Spins in Optically Active Quantum Dots: Concepts and Methods

Spins in Optically Active Quantum Dots: Concepts and Methods book cover

Spins in Optically Active Quantum Dots: Concepts and Methods

Author(s): Oliver Gywat (Author), Hubert J. Krenner (Author), Jesse Berezovsky (Author)

  • Publisher: Wiley-VCH
  • Publication Date: 16 Dec. 2009
  • Edition: 1st
  • Language: English
  • Print length: 219 pages
  • ISBN-10: 9783527408061
  • ISBN-13: 9783527408061

Book Description

Filling a gap in the literature, this up-to-date introduction to the field provides an overview of current experimental techniques, basic theoretical concepts, and sample fabrication methods.
Following an introduction, this monograph deals with optically active quantum dots and their integration into electro-optical devices, before looking at the theory of quantum confined states and quantum dots interacting with the radiation field. Final chapters cover spin-spin interaction in quantum dots as well as spin and charge states, showing how to use single spins for break-through quantum computation. A conclusion and outlook round off the volume.
The result is a primer providing the essential basic knowledge necessary for young researchers entering the field, as well as semiconductor and theoretical physicists, PhD students in physics and material sciences, electrical engineers and materials scientists.

Editorial Reviews

From the Inside Flap

At the intersection of semiconductor nanoscience and optics, this book provides an up-to-date introduction to the theory and methods of optically controlling spins in quantum dots.

Following an overview of the basic concepts of spin physics, this monograph describes fabrication methods of optically active quantum dots and their integration in electro-optic devices. Next, the theory of quantum-confined states is discussed, as well as spin-spin interactions and interaction with the radiation field. A review of key experimental techniques is given, highlighting recent results from the literature that demonstrate progress towards potential applications in spintronics and quantum information processing.

The result is a primer providing the essential basic knowledge necessary for young researchers entering the field. Additionally, this work — encompassing theory, experiment, and materials science issues — is a useful overview for specialists in this, or related fields.

From the contents:
Preface by David D. Awschalom
Optically active quantum dots: single and coupled structures
Theory of confined states in quantum dots
Integration of quantum dots in electro-optic devices
Quantum dots interacting with the electromagnetic field
Spin-spin interaction in quantum dots
Experimental methods for optical initialization, readout, and manipulation of spins
Controlling charge and spin excitations in coupled quantum dots

From the Back Cover

At the intersection of semiconductor nanoscience and optics, this book provides an up-to-date introduction to the theory and methods of optically controlling spins in quantum dots.

Following an overview of the basic concepts of spin physics, this monograph describes fabrication methods of optically active quantum dots and their integration in electro-optic devices. Next, the theory of quantum-confined states is discussed, as well as spin-spin interactions and interaction with the radiation field. A review of key experimental techniques is given, highlighting recent results from the literature that demonstrate progress towards potential applications in spintronics and quantum information processing.

The result is a primer providing the essential basic knowledge necessary for young researchers entering the field. Additionally, this work — encompassing theory, experiment, and materials science issues — is a useful overview for specialists in this, or related fields.

From the contents:
Preface by David D. Awschalom
Optically active quantum dots: single and coupled structures
Theory of confined states in quantum dots
Integration of quantum dots in electro-optic devices
Quantum dots interacting with the electromagnetic field
Spin-spin interaction in quantum dots
Experimental methods for optical initialization, readout, and manipulation of spins
Controlling charge and spin excitations in coupled quantum dots

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