Quantum Optics with Semiconductor Nanostructures

Quantum Optics with Semiconductor Nanostructures
Author: Frank Jahnke
Publisher: Elsevier
Total Pages: 607
Release: 2012-07-16
Genre: Technology & Engineering
ISBN: 0857096397

Download Quantum Optics with Semiconductor Nanostructures Book in PDF, Epub and Kindle

An understanding of the interaction between light and matter on a quantum level is of fundamental interest and has many applications in optical technologies. The quantum nature of the interaction has recently attracted great attention for applications of semiconductor nanostructures in quantum information processing. Quantum optics with semiconductor nanostructures is a key guide to the theory, experimental realisation, and future potential of semiconductor nanostructures in the exploration of quantum optics.Part one provides a comprehensive overview of single quantum dot systems, beginning with a look at resonance fluorescence emission. Quantum optics with single quantum dots in photonic crystal and micro cavities are explored in detail, before part two goes on to review nanolasers with quantum dot emitters. Light-matter interaction in semiconductor nanostructures, including photon statistics and photoluminescence, is the focus of part three, whilst part four explores all-solid-state quantum optics, crystal nanobeam cavities and quantum-dot microcavity systems. Finally, part five investigates ultrafast phenomena, including femtosecond quantum optics and coherent optoelectronics with quantum dots.With its distinguished editor and international team of expert contributors, Quantum optics with semiconductor nanostructures is an essential guide for all those involved with the research, development, manufacture and use of semiconductors nanodevices, lasers and optical components, as well as scientists, researchers and students. A key guide to the theory, experimental realisation, and future potential of semiconductor nanostructures in the exploration of quantum optics Chapters provide a comprehensive overview of single quantum dot systems, nanolasers with quantum dot emitters, and light-matter interaction in semiconductor nanostructures Explores all-solid-state quantum optics, crystal nanobeam cavities and quantum-dot microcavity systems, and investigates ultrafast phenomena


Quantum Optics with Semiconductor Nanostructures
Language: en
Pages: 607
Authors: Frank Jahnke
Categories: Technology & Engineering
Type: BOOK - Published: 2012-07-16 - Publisher: Elsevier

GET EBOOK

An understanding of the interaction between light and matter on a quantum level is of fundamental interest and has many applications in optical technologies. Th
Optical Generation and Control of Quantum Coherence in Semiconductor Nanostructures
Language: en
Pages: 338
Authors: Gabriela Slavcheva
Categories: Science
Type: BOOK - Published: 2010-06-01 - Publisher: Springer Science & Business Media

GET EBOOK

The fundamental concept of quantum coherence plays a central role in quantum physics, cutting across disciplines of quantum optics, atomic and condensed matter
Optical Spectroscopy of Semiconductor Nanostructures
Language: en
Pages: 444
Authors: Eougenious L. Ivchenko
Categories: Science
Type: BOOK - Published: 2005 - Publisher: Alpha Science Int'l Ltd.

GET EBOOK

This volume looks at optical spectroscopy of semiconductir nanostructures. Some of the topics it covers include: kingdom of nanostructures; quantum confinement
Quantum Coherence Correlation and Decoherence in Semiconductor Nanostructures
Language: en
Pages: 508
Authors: Toshihide Takagahara
Categories: Technology & Engineering
Type: BOOK - Published: 2003-02-10 - Publisher: Academic Press

GET EBOOK

Semiconductor nanostructures are attracting a great deal of interest as the most promising device with which to implement quantum information processing and qua
Optics of Semiconductors and Their Nanostructures
Language: en
Pages: 360
Authors: Heinz Kalt
Categories: Science
Type: BOOK - Published: 2013-04-09 - Publisher: Springer Science & Business Media

GET EBOOK

In recent years the field of semiconductor optics has been pushed to several extremes. The size of semiconductor structures has shrunk to dimensions of a few na