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Quantum Information Theory: Noisy Quantum Shannon Theory

Mark M. Wilde
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The article was published on 2013-01-01 and is currently open access. It has received 608 citations till now. The article focuses on the topics: Quantum information & Open quantum system.

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Citations
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Quantum non-Markovianity: characterization, quantification and detection

TL;DR: A comprehensive and up-to-date review of the concept of quantum non-Markovianity, a central theme in the theory of open quantum systems, is presented and a detailed comparison with other definitions presented in the literature is provided.
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Quantum Thermodynamics

TL;DR: Quantum thermodynamics is an emerging research field aiming to extend standard thermodynamics and non-equilibrium statistical physics to ensembles of sizes well below the thermodynamic limit.
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Advances in quantum teleportation

TL;DR: In this paper, a review of state-of-the-art quantum teleportation technologies, from photonic qubits and optical modes to atomic ensembles, trapped atoms and solid-state systems, is presented.
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The role of quantum information in thermodynamics—a topical review

TL;DR: This topical review article gives an overview of the interplay between quantum information theory and thermodynamics of quantum systems, including the foundations of statistical mechanics, resource theories, entanglement in thermodynamic settings, fluctuation theorems and thermal machines.
References
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A mathematical theory of communication

TL;DR: This final installment of the paper considers the case where the signals or the messages or both are continuously variable, in contrast with the discrete nature assumed until now.
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Can Quantum-Mechanical Description of Physical Reality Be Considered Complete?

TL;DR: Consideration of the problem of making predictions concerning a system on the basis of measurements made on another system that had previously interacted with it leads to the result that one is led to conclude that the description of reality as given by a wave function is not complete.
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Information Theory and Statistical Mechanics. II

TL;DR: In this article, the authors consider statistical mechanics as a form of statistical inference rather than as a physical theory, and show that the usual computational rules, starting with the determination of the partition function, are an immediate consequence of the maximum-entropy principle.
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Teleporting an unknown quantum state via dual classical and Einstein-Podolsky-Rosen channels

TL;DR: An unknown quantum state \ensuremath{\Vert}\ensure Math{\varphi}〉 can be disassembled into, then later reconstructed from, purely classical information and purely nonclassical Einstein-Podolsky-Rosen (EPR) correlations.
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Quantum cryptography based on Bell's theorem.

TL;DR: Practical application of the generalized Bells theorem in the so-called key distribution process in cryptography is reported, based on the Bohms version of the Einstein-Podolsky-Rosen gedanken experiment andBells theorem is used to test for eavesdropping.
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