Image for Quantum information processing with diamond: principles and applications

Quantum information processing with diamond: principles and applications - Number 63

Aharonovich, Igor(Edited by)Prawer, Steven(Edited by)
Part of the Woodhead Publishing Series in Electronic and Optical Materials series
See all formats and editions

Diamond nitrogen vacancy (NV) color centers can transform quantum information science into practical quantum information technology, including fast, safe computing. Quantum Information Processing with Diamond looks at the principles of quantum information science, diamond materials, and their applications.

Part one provides an introduction to quantum information processing using diamond, as well as its principles and fabrication techniques. Part two outlines experimental demonstrations of quantum information processing using diamond, and the emerging applications of diamond for quantum information science. It contains chapters on quantum key distribution, quantum microscopy, the hybridization of quantum systems, and building quantum optical devices. Part three outlines promising directions and future trends in diamond technologies for quantum information processing and sensing.

Quantum Information Processing with Diamond is a key reference for R&D managers in industrial sectors such as conventional electronics, communication engineering, computer science, biotechnology, quantum optics, quantum mechanics, quantum computing, quantum cryptology, and nanotechnology, as well as academics in physics, chemistry, biology, and engineering.



  • Brings together the topics of diamond and quantum information processing
  • Looks at applications such as quantum computing, neural circuits, and in vivo monitoring of processes at the molecular scale

Read More
Special order line: only available to educational & business accounts. Sign In
£180.00
Product Details
Woodhead Publishing
0857096680 / 9780857096685
eBook (Adobe Pdf, EPUB)
530.12
08/05/2014
England
English
318 pages
Copy: 10%; print: 10%
Description based on CIP data; item not viewed.