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Introduction to Quantum Interactive Proof Systems

shahab razavi

ISBN 10: 3838364112 / ISBN 13: 9783838364117
Published by LAP LAMBERT Academic Publishing
New Condition: New Soft cover
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About this Item

Paperback. 60 pages. Dimensions: 8.7in. x 5.9in. x 0.1in.Over the last few decades, the limitations of classical computing demand for a new way of computation. One such limit can be found in classical interactive proof systems. Quantum computing sounds promising enough in overcoming those limits. Although there are many great books on this subject, a short introduction to quantum interactive proof systems which gives the reader an intuition of the subject was lacking. This book, therefore, provides such an intuition by firstly introducing the basic concepts and secondly by defining some of the quantum computational classes based on their classical counterparts. At the end a quantum oracle separation of QMA and QCMA is presented which helps the reader in better understanding of differences between quantum and classical interactive proof systems. This item ships from multiple locations. Your book may arrive from Roseburg,OR, La Vergne,TN. Bookseller Inventory # 9783838364117

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Bibliographic Details

Title: Introduction to Quantum Interactive Proof ...

Publisher: LAP LAMBERT Academic Publishing

Binding: Paperback

Book Condition:New

Book Type: Paperback

About this title

Synopsis:

Over the last few decades, the limitations of classical computing demand for a new way of computation. One such limit can be found in classical interactive proof systems. Quantum computing sounds promising enough in overcoming those limits. Although there are many great books on this subject, a short introduction to quantum interactive proof systems which gives the reader an intuition of the subject was lacking. This book, therefore, provides such an intuition by firstly introducing the basic concepts and secondly by defining some of the quantum computational classes based on their classical counterparts. At the end a quantum oracle separation of QMA and QCMA is presented which helps the reader in better understanding of differences between quantum and classical interactive proof systems.

About the Author:

Shahab Razavi received his M.Sc. at University of Georgia in Computer Science. He is currently a Ph.D. student in Department of Physics and Astronomy at University of Georgia.

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