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Abstract: Quantum Theory of Information. Recall the arguments in Section 2, where the possibility of translating between di#erent carriers of (classical) information was taken as the justification for looking at an abstracted version, the classical Theory of Information, as founded by Shannon. While it is true that quantum information cannot be translated into this framework, and is hence a new kind of information, translation is often possible (at least in principle) between di#erent carriers of quantum ... (Update)
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BibTeX entry: (Update)
R.F. Werner, \Quantum information theory | an invitation," in Quantum Information | an Introduction to Basic Theoretical Concepts and Experiments, Springer Tracts in Modern Physics, vol. 173 (Springer-Verlag, Berlin, 2001), pp. 14-57. http://citeseer.ist.psu.edu/article/werner01quantum.html More
@misc{ werner01quantum,
author = "R. Werner",
title = "Quantum information theory | an invitation",
text = "R.F. Werner, \Quantum information theory | an invitation, in Quantum Information
| an Introduction to Basic Theoretical Concepts and Experiments, Springer
Tracts in Modern Physics, vol. 173 (Springer-Verlag, Berlin, 2001), pp.
14-57.",
year = "2001",
url = "citeseer.ist.psu.edu/article/werner01quantum.html" }
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Documents on the same site (http://www.imaph.tu-bs.de/qi/papers.html): More
On Some Additivity Problems in Quantum Information Theory - Amosov Holevo And
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All Teleportation and Dense Coding Schemes - Werner (2000)
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The Classical Limit of Quantum Theory - Werner (1995)
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