Quantum channels and memory effects

物理 量子信道 量子信息 量子容量 量子纠错 背景(考古学) 量子 量子信息科学 频道(广播) 统计物理学 信息论 计算机科学 理论物理学 量子纠缠 理论计算机科学 量子网络 量子力学 数学 电信 统计 生物 古生物学
作者
Filippo Caruso,Vittorio Giovannetti,Cosmo Lupo,Stefano Mancini
出处
期刊:Reviews of Modern Physics [American Physical Society]
卷期号:86 (4): 1203-1259 被引量:248
标识
DOI:10.1103/revmodphys.86.1203
摘要

Any physical process can be represented as a quantum channel mapping an initial state to a final state. Hence it can be characterized from the point of view of communication theory, i.e., in terms of its ability to transfer information. Quantum information provides a theoretical framework and the proper mathematical tools to accomplish this. In this context the notion of codes and communication capacities have been introduced by generalizing them from the classical Shannon theory of information transmission and error correction. The underlying assumption of this approach is to consider the channel not as acting on a single system, but on sequences of systems, which, when properly initialized allow one to overcome the noisy effects induced by the physical process under consideration. While most of the work produced so far has been focused on the case in which a given channel transformation acts identically and independently on the various elements of the sequence (memoryless configuration in jargon), correlated error models appear to be a more realistic way to approach the problem. A slightly different, yet conceptually related, notion of correlated errors applies to a single quantum system which evolves continuously in time under the influence of an external disturbance which acts on it in a non-Markovian fashion. This leads to the study of memory effects in quantum channels: a fertile ground where interesting novel phenomena emerge at the intersection of quantum information theory and other branches of physics. A survey is taken of the field of quantum channels theory while also embracing these specific and complex settings.
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