Quantum Dots for Quantum Information Technologies (eBook)
XVII, 448 Seiten
Springer International Publishing (Verlag)
978-3-319-56378-7 (ISBN)
This book highlights the most recent developments in quantum dot spin physics and the generation of deterministic superior non-classical light states with quantum dots. In particular, it addresses single quantum dot spin manipulation, spin-photon entanglement and the generation of single-photon and entangled photon pair states with nearly ideal properties. The role of semiconductor microcavities, nanophotonic interfaces as well as quantum photonic integrated circuits is emphasized. The latest theoretical and experimental studies of phonon-dressed light matter interaction, single-dot lasing and resonance fluorescence in QD cavity systems are also provided. The book is written by the leading experts in the field.
Peter Michler got his Physics Diploma and his PhD degree from the University of Stuttgart in 1990 and 1994, respectively. He worked as post-doc at the Max-Planck Institute for Solid State Research in Stuttgart from 1994 to 1995. From 1995 to 1999, he was a research group leader at the University of Bremen and from 1999 until 2000 he spent a one year research stay at the University of California, Santa Barbara. In 2001, he performed his habilitation at the University of Bremen and he became a professor in 2003 at the University of Stuttgart. Since May 2006, he has headed the Institute for Semiconductor Optics and Functional Interfaces at the University of Stuttgart, concentrating research on quantum dots, quantum optics, non-classical light sources and semiconductor lasers.
Peter Michler got his Physics Diploma and his PhD degree from the University of Stuttgart in 1990 and 1994, respectively. He worked as post-doc at the Max-Planck Institute for Solid State Research in Stuttgart from 1994 to 1995. From 1995 to 1999, he was a research group leader at the University of Bremen and from 1999 until 2000 he spent a one year research stay at the University of California, Santa Barbara. In 2001, he performed his habilitation at the University of Bremen and he became a professor in 2003 at the University of Stuttgart. Since May 2006, he has headed the Institute for Semiconductor Optics and Functional Interfaces at the University of Stuttgart, concentrating research on quantum dots, quantum optics, non-classical light sources and semiconductor lasers.
Theory of semiconductor quantum dots - single-dot lasing, superradiance and two-photon emission.- Theory of phonon-dressed light matter interactions and resonance fluorescence in quantum dot cavity systems.- Resonantly excited quantum dots: superior non-classical light sources for quantum information.- Generation of time-bin entangled photon pairs and hyper entanglement.- Generation of polarization entangled-photon pairs.- QDs in nanowires.- The physics of large quantum dots in photonic nanostructures.- Enhancing photon-photon and spin-photon interaction with cavity-QED.- Nanophotonic interface for quantum dot spin qubits.- Cavity QED effects and transform limited photons.- Deterministic single-photon sources based on quantum dot microlenses.- Photonic integrated circuits with quantum dots.- Ultrafast manipulation of spins in quantum dots.- Coherent control of dark excitons in quantum dots.- Hybrid quantum dot-atomic systems.- Generation of quantum dot spin entanglement.
Erscheint lt. Verlag | 1.6.2017 |
---|---|
Reihe/Serie | Nano-Optics and Nanophotonics | Nano-Optics and Nanophotonics |
Zusatzinfo | XVII, 448 p. 221 illus., 80 illus. in color. |
Verlagsort | Cham |
Sprache | englisch |
Themenwelt | Mathematik / Informatik ► Informatik |
Naturwissenschaften ► Physik / Astronomie | |
Technik ► Elektrotechnik / Energietechnik | |
Technik ► Maschinenbau | |
Schlagworte | Cavity-QED • Entangled Photons • Phonon-dressed light matter interaction • Quantum Photonic Integrated Circuits • Resonance Fluorescence • Single-dot lasing • Spin-photon Entanglement • Theory of Semiconductor Quantum Dots |
ISBN-10 | 3-319-56378-5 / 3319563785 |
ISBN-13 | 978-3-319-56378-7 / 9783319563787 |
Haben Sie eine Frage zum Produkt? |
Größe: 23,0 MB
DRM: Digitales Wasserzeichen
Dieses eBook enthält ein digitales Wasserzeichen und ist damit für Sie personalisiert. Bei einer missbräuchlichen Weitergabe des eBooks an Dritte ist eine Rückverfolgung an die Quelle möglich.
Dateiformat: PDF (Portable Document Format)
Mit einem festen Seitenlayout eignet sich die PDF besonders für Fachbücher mit Spalten, Tabellen und Abbildungen. Eine PDF kann auf fast allen Geräten angezeigt werden, ist aber für kleine Displays (Smartphone, eReader) nur eingeschränkt geeignet.
Systemvoraussetzungen:
PC/Mac: Mit einem PC oder Mac können Sie dieses eBook lesen. Sie benötigen dafür einen PDF-Viewer - z.B. den Adobe Reader oder Adobe Digital Editions.
eReader: Dieses eBook kann mit (fast) allen eBook-Readern gelesen werden. Mit dem amazon-Kindle ist es aber nicht kompatibel.
Smartphone/Tablet: Egal ob Apple oder Android, dieses eBook können Sie lesen. Sie benötigen dafür einen PDF-Viewer - z.B. die kostenlose Adobe Digital Editions-App.
Buying eBooks from abroad
For tax law reasons we can sell eBooks just within Germany and Switzerland. Regrettably we cannot fulfill eBook-orders from other countries.
aus dem Bereich