Ozawa, Masanao Teaching courses on quantum information theory and quantum computation. Quantum Information Theory Tutorial Mark M. Wilde Hearne Institute for Theoretical Physics, Department of Physics and Astronomy, Center for Computation and Technology, Louisiana State University, Baton Rouge, Louisiana, USA mwilde@lsu.edu Reference: Quantum Information Theory published by Cambridge University Press (2nd edition) 2014. The character and main contents of this book did not change and are well described by the reviewer of the first edition. ', Patrick Hayden - Stanford University, California, '… the book does a phenomenal job of introducing, developing and nurturing a mathematical sense of quantum information processing … In a nutshell, this is an essential reference for students and researchers who work in the area or are trying to understand what it is that quantum information theorists study. The file will be sent to your Kindle account. Current and Select Publications. It is assumed that the reader is already familiar with the most We use cookies to distinguish you from other users and to provide you with a better experience on our websites. Vedral, Vlatko Maniscalco, Sabrina and 2013. It may takes up to 1-5 minutes before you received it. Bylicka, Bogna and The present edition includes the important developments of the latter years.'. is added to your Approved Personal Document E-mail List under your Personal Document Settings It may take up to 1-5 minutes before you receive it. Chruściński, Dariusz and If this is the first time you use this feature, you will be asked to authorise Cambridge Core to connect with your account. To send content items to your Kindle, first ensure no-reply@cambridge.org Nineteenth-century clouds over the dynamical theory of heat and light, The London, Edinburgh and Dublin Philosophical Magazine and Journal of Science, Unification of quantum information theory, Generalized remote state preparation: Trad-ing cbits, qubits, and ebits in quantum communication, von Neumann capacity of noisy quantum channels, Fault-tolerant quantum computation with constant error, Strong converse for identification via quantum channels, On the distributed compression of quantum information, Continuity of quantum conditional information, Journal of Physics A: Mathematical and General, Experimental tests of realistic local theories via Bell's theorem, Hastings' additivity counterexample via Dvoretzky's theorem, A sharp continuity estimate for the von Neumann entropy, Journal of Physics A: Mathematical and Theoretical, Information transmission through a noisy quantum channel, On quantum delities and channel capacities, On the reversible extraction of classical information from a quantum source, On quantum coding for ensembles of mixed states, Quantum cryptography using any two nonorthogonal states, A resource-based view of quantum information, Concentrating partial entanglement by local operations, Quantum cryptography: Public key distribution and coin tossing, Communication via one- and two-particle operators on Einstein–Podolsky–Rosen states, Quantum cryptography without Bell's theorem, Teleporting an unknown quantum state via dual classical and Einstein–Podolsky–Rosen channels, Purification of noisy entanglement and faithful teleportation via noisy channels, Mixed-state entanglement and quantum error correction, Entanglement-assisted classical capacity of noisy quantum channels, Entanglement-assisted capacity of a quantum channel and the reverse Shannon theorem, Universal quantum data compression via nondestructive tomography, Rate Distortion Theory: A mathematical basis for data compression, The Information Theory Approach to Communications, The uncertainty principle in the presence of quantum memory, The quantum reverse Shannon theorem based on one-shot information theory, International Journal of Quantum Information, On feedback and the classical capacity of a noisy quantum channel, Trade-off capacities of the quantum Hadamard channels, On Hastings' counterexamples to the minimum output entropy additivity conjecture, The quantum capacity of channels with arbitrarily correlated noise, Quantum privacy and quantum wiretap channels, Good quantum error-correcting codes exist, Quantum error correction and orthogonal geometry, Quantum error correction via codes over GF(4), Negative entropy and information in quantum mechanics, Information Theory: Coding Theo rems for Discrete Memoryless Systems, Min- and max-relative entropies and a new entanglement monotone, Universal coding for transmission of private information, The apex of the family tree of protocols: Optimal rates and resource inequalities, Smooth entropies and the quantum information spectrum, An operational approach to quantum probability, Quantum theory, the Church–Turing principle and the universal quantum computer, Proceedings of the Royal Society of London, The private classical capacity and quantum capacity of a quantum channel, Triangle of dualities between quantum communication protocols, The capacity of a quantum channel for simultaneous transmission of classical and quantum information, Classical data compression with quantum side information, Relating quantum privacy and quantum coherence: An operational approach, Distillation of secret key and entanglement from quantum states, Exact cost of redistributing multipartite quantum states, Multiplicativity of completely bounded p-norms implies a new additivity result, A resource framework for quantum Shannon theory, The Principles of Quantum Mechanics (International Series of Monographs on Physics), Quantum-channel capacity of very noisy channels, Quantum technology: The second quantum revolution, Philosophical Transactions of The Royal Society of London, The decoupling approach to quantum information theory, A father protocol for quantum broadcast channels, Multiparty quantum protocols for assisted entanglement distillation, Über einen die erzeugung und verwandlung des lichtes betreffenden heuristischen gesichtspunkt.

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