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Operational Resource Theory of Coherence.

TLDR
An operational theory of coherence (or of superposition) in quantum systems is established, by focusing on the optimal rate of performance of certain tasks, by demonstrating that the coherence theory is generically an irreversible theory by a simple criterion that completely characterizes all reversible states.
Abstract
We establish an operational theory of coherence (or of superposition) in quantum systems, by focusing on the optimal rate of performance of certain tasks. Namely, we introduce the two basic concepts-"coherence distillation" and "coherence cost"-in the processing quantum states under so-called incoherent operations [Baumgratz, Cramer, and Plenio, Phys. Rev. Lett. 113, 140401 (2014)]. We, then, show that, in the asymptotic limit of many copies of a state, both are given by simple single-letter formulas: the distillable coherence is given by the relative entropy of coherence (in other words, we give the relative entropy of coherence its operational interpretation), and the coherence cost by the coherence of formation, which is an optimization over convex decompositions of the state. An immediate corollary is that there exists no bound coherent state in the sense that one would need to consume coherence to create the state, but no coherence could be distilled from it. Further, we demonstrate that the coherence theory is generically an irreversible theory by a simple criterion that completely characterizes all reversible states.

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Assisted coherence distillation of certain mixed states

TL;DR: This paper investigates the assisted coherence distillation of some special mixed states, the states with vanished basis-dependent discord and Werner states, and shows that all the four sets of operations are equivalent for assisted coherent distillation, whenever Alice and Bob share one of those mixed quantum states.
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Intrinsic Measure of Coherence in High-Dimensional Systems

TL;DR: In this article, a Frobenius norm based measure of coherence has been conjectured by generalizing the geometric interpretation of the degree of polarization to higher dimensions, and the suitability of this quantity as an intrinsic measure of Coherence in higher dimensions by generalising two other interpretations, namely, the visibility and Stokes parameters, was established.
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State transfer with quantum side information

TL;DR: In this paper, the authors considered quantum state transfer with quantum side information, where Alice and Bob may have quantum information, not transferred, and determined the optimal costs for non-local resources in the protocols and studied what the effects of the use of quantum information are.
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State transfer with quantum side information.

TL;DR: The results can give new operational meanings to the quantum mutual information and the quantum conditional mutual information, which directly provide us with an operational interpretation of the chain rule for the quantum Mutual information.
Journal ArticleDOI

Distillability for non-full-rank coherent states in the probabilistic framework

TL;DR: It is proved that every non-full-rank coherent state exhibits a nonzero probability in the task of probabilistic deterministic distillation and the maximal coherence is a computable coherence monotone under strictly incoherent operations (SIO).
References
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Book

Elements of information theory

TL;DR: The author examines the role of entropy, inequality, and randomness in the design of codes and the construction of codes in the rapidly changing environment.
Journal ArticleDOI

Entanglement of Formation of an Arbitrary State of Two Qubits

TL;DR: In this article, an explicit formula for the entanglement of formation of a pair of binary quantum objects (qubits) as a function of their density matrix was conjectured.
Journal ArticleDOI

Quantum entanglement

TL;DR: In this article, the basic aspects of entanglement including its characterization, detection, distillation, and quantification are discussed, and a basic role of entonglement in quantum communication within distant labs paradigm is discussed.
Book

Inequalities: Theory of Majorization and Its Applications

TL;DR: In this paper, Doubly Stochastic Matrices and Schur-Convex Functions are used to represent matrix functions in the context of matrix factorizations, compounds, direct products and M-matrices.
Journal ArticleDOI

Quantifying Coherence

TL;DR: In this article, a rigorous framework for quantification of coherence and identification of intuitive and easily computable measures for coherence has been proposed by adopting coherence as a physical resource.
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