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并非所有的物理误差都可以在相关空间中表示为线性 CPTP 映射。

Not all physical errors can be linear CPTP maps in a correlation space.

机构信息

Controlled Quantum Dynamics Theory Group, Imperial College London, London SW7 2AZ, United Kingdom.

出版信息

Sci Rep. 2012;2:508. doi: 10.1038/srep00508. Epub 2012 Jul 13.

Abstract

In the framework of quantum computational tensor network, which is a general framework of measurement-based quantum computation, the resource many-body state is represented in a tensor-network form (or a matrix-product form), and universal quantum computation is performed in a virtual linear space, which is called a correlation space, where tensors live. Since any unitary operation, state preparation, and the projection measurement in the computational basis can be simulated in a correlation space, it is natural to expect that fault-tolerant quantum circuits can also be simulated in a correlation space. However, we point out that not all physical errors on physical qudits appear as linear completely-positive trace-preserving errors in a correlation space. Since the theories of fault-tolerant quantum circuits known so far assume such noises, this means that the simulation of fault-tolerant quantum circuits in a correlation space is not so straightforward for general resource states.

摘要

在量子计算张量网络框架内,这是一种基于测量的量子计算的通用框架,多体资源态以张量网络形式(或矩阵乘积形式)表示,并且在称为相关空间的虚拟线性空间中执行通用量子计算,张量存在于其中。由于在计算基中的任何幺正操作、态制备和投影测量都可以在相关空间中进行模拟,因此可以自然地期望容错量子电路也可以在相关空间中进行模拟。然而,我们指出,物理量子位上的并非所有物理错误都在相关空间中表现为线性完全正迹保持误差。由于迄今为止已知的容错量子电路理论都假设了这样的噪声,这意味着对于一般的资源态,在相关空间中进行容错量子电路的模拟并不那么直接。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e011/3396152/382ed81ff14b/srep00508-f1.jpg

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