Informationally incomplete quantum tomography

Y. S. Teo, J. Řeháček, Z. Hradil
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引用次数: 12

Abstract

Abstract In quantum-state tomography on sources with quantum degrees of freedom of large Hilbert spaces, inference of quantum states of light for instance, a complete characterization of the quantum states for these sources is often not feasible owing to limited resources. As such, the concepts of informationally incomplete state estimation becomes important. These concepts are ideal for applications to quantum channel/ process tomography, which typically requires a much larger number of measurement settings for a full characterization of a quantum channel. Some key aspects of both quantumstate and quantum-process tomography are arranged together in the form of a tutorial review article that is catered to students and researchers who are new to the field of quantum tomography, with focus on maximum-likelihood related techniques as instructive examples to illustrate these ideas.
信息不完全量子断层扫描
摘要在大希尔伯特空间的量子自由度源的量子态层析中,例如光的量子态推断,由于资源有限,通常无法对这些源的量子态进行完整的表征。因此,信息不完全状态估计的概念变得很重要。这些概念对于量子通道/过程断层扫描的应用是理想的,这通常需要大量的测量设置来全面表征量子通道。量子态和量子过程断层扫描的一些关键方面被安排在一起,以一篇教程评论文章的形式,迎合了对量子断层扫描领域不熟悉的学生和研究人员,重点是最大似然相关技术作为说明这些思想的指导性例子。
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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