A Theory of Quantum Instruments

Q1 Arts and Humanities Quanta Pub Date : 2023-05-27 DOI:10.12743/quanta.v12i1.233
S. Gudder
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引用次数: 1

Abstract

Until recently, a quantum instrument was defined to be a completely positive operation-valued measure from the set of states on a Hilbert space to itself. In the last few years, this definition has been generalized to such measures between sets of states from different Hilbert spaces called the input and output Hilbert spaces. This article presents a theory of such instruments. Ways that instruments can be combined such as convex combinations, post-processing, sequential products, tensor products and conditioning are studied. We also consider marginal, reduced instruments and how these are used to define coexistence (compatibility) of instruments. Finally, we present a brief introduction to quantum measurement models where the generalization of instruments is essential. Many of the concepts of the theory are illustrated by examples. In particular, we discuss Holevo and Kraus instruments.Quanta 2023; 12: 27–40.
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量子仪器理论
直到最近,量子仪器还被定义为从希尔伯特空间上的一组状态到它自己的一个完全正的运算值测度。在过去的几年里,这个定义已经被推广到来自不同希尔伯特空间的状态集之间的度量,称为输入和输出希尔伯特空间。本文介绍了这类仪器的理论。研究了仪器的组合方式,如凸组合、后处理、序列积、张量积和条件化。我们还考虑了边际、减少的文书,以及如何使用这些文书来定义文书的共存(兼容性)。最后,我们简要介绍了量子测量模型,其中仪器的通用性至关重要。该理论的许多概念都通过实例加以说明。我们特别讨论了Holevo和Kraus文书。Quanta 2023;12:27-40。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Quanta
Quanta Arts and Humanities-History and Philosophy of Science
CiteScore
1.30
自引率
0.00%
发文量
5
审稿时长
12 weeks
期刊介绍: Quanta is an open access academic journal publishing original research and review articles on foundations of quantum mechanics, mathematical physics and philosophy of science.
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