Overcoming small obstacles
19 December 2012 Feature
Andy Extance looks at nanofabrication methods combining printing and lithography
Semiconductor quantum optics
Mackillo Kira and Stephan Koch
Cambridge University Press
2011 | 658pp | £50 (HB)
ISBN 9780521875097
Reviewed by Caryl Richards
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The book is aimed at graduate students and researchers, as is only too evident from the equation-heavy, terse style. The opening chapters do cover the fundamentals of classical electromagnetism and quantum mechanics, familiar to most undergraduate classes, but the derivations make for good revision alone and do not serve as stand-alone texts on these subjects. Instead, these chapters lay the foundations in a cumulative technique, as each chapter derives on relations and approximations developed in the last. With the basics covered, the pivotal point begins almost halfway into the book with the cluster expansion method that bridges traditional quantum field theory with many-body systems.
Billed as an up to date theoretical treatment, the authors describe the proof of principle quantum optical devices that are being developed in today’s laboratories. Only theoretical concepts are developed here, however, and the authors refer to their second book in the series for an account of applications.
The authors by no means describe their theory as a complete description and concede that the complexity of the problem can only lead to approximate predictions. However, this is as an excellent reference text and their model will surely serve as a solid platform for future work.
Purchase this book on Amazon.co.uk.
19 December 2012 Feature
Andy Extance looks at nanofabrication methods combining printing and lithography
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