Image for Quantum Information Theory : Mathematical Foundation

Quantum Information Theory : Mathematical Foundation (Softcover reprint of the original 2nd ed. 2017)

Part of the Graduate Texts in Physics series
See all formats and editions

This graduate textbook provides a unified view of quantum information theory.

Clearly explaining the necessary mathematical basis, it merges key topics from both information-theoretic and quantum- mechanical viewpoints and provides  lucid explanations of the basic results.

Thanks to this unified approach, it makes accessible such advanced topics in quantum communication as quantum teleportation, superdense coding, quantum state transmission (quantum error-correction) and quantum encryption. Since the publication of the preceding book Quantum Information: An Introduction, there have been tremendous strides in the field of quantum information.

In particular, the following topics – all of which are addressed here – made seen major advances: quantum state discrimination, quantum channel capacity, bipartite and multipartite entanglement, security analysis on quantum communication, reverse Shannon theorem and uncertainty relation. With regard to the analysis of quantum security, the present book employs an improved method for the evaluation of leaked information and identifies a remarkable relation between quantum security and quantum coherence.

Taken together, these two improvements allow a better analysis of quantum state transmission.

In addition, various types of the newly discovered uncertainty relation are explained. Presenting a wealth of new developments, the book introduces readers to the latest advances and challenges in quantum information. To aid in understanding, each chapter is accompanied by a set of exercises and solutions.

Read More
Available
£31.49 Save 10.00%
RRP £34.99
Add Line Customisation
Usually dispatched within 4 weeks
Add to List
Product Details
3662570327 / 9783662570326
Paperback / softback
004.1
29/06/2018
Germany
636 pages, 1 Illustrations, color; 23 Illustrations, black and white; XLIII, 636 p. 24 illus., 1 ill
155 x 235 mm