论文标题

使用离散时间量子步行在闭合图上使用多数量子计算

Multi-qubit quantum computing using discrete-time quantum walks on closed graphs

论文作者

Chawla, Prateek, Singh, Shivani, Agarwal, Aman, Srinivasan, Sarvesh, Chandrashekar, C. M.

论文摘要

可以使用连续时间和离散时间量子步行来实现通用量子计算。我们提出一个基于单个粒子离散时间量子步行的版本,以实现多量计算任务。通过在封闭的晶格形式上使用一组步行操作来证明该方案的可伸缩性,以实现多Qubit System上的通用量子门集。我们还提供了一组实验可实现的步行操作,这些操作可以实现Grover的算法,量子傅立叶变换和量子相估计算法。还提出了错误检测和校正的基本实现。该方案的空间和时间复杂性的分析突出了基于量子步行模型的量子计算模型的优势,而量子步行进化操作的实现是系统的固有特征。

Universal quantum computation can be realised using both continuous-time and discrete-time quantum walks. We present a version based on single particle discrete-time quantum walk to realize multi-qubit computation tasks. The scalability of the scheme is demonstrated by using a set of walk operations on a closed lattice form to implement the universal set of quantum gates on multi-qubit system. We also present a set of experimentally realizable walk operations that can implement Grover's algorithm, quantum Fourier transformation and quantum phase estimation algorithms. An elementary implementation of error detection and correction is also presented. Analysis of space and time complexity of the scheme highlights the advantages of quantum walk based model for quantum computation on systems where implementation of quantum walk evolution operations is an inherent feature of the system.

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