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Universal quantum computing using single-particle discrete-time quantum walk

2019/07/31 by Shivani Singh, Prateek Chawla, Anupam Sarkar +1 · 2 citations
Physics and Astronomy · #quant-ph

paper · pdf · doi:10.1038/s41598-021-91033-5

published as Scientific Reports 11, 11551 (2021) · Updated to latest version, corrected grammar and moved appendix to main text

arxiv created 2021/06/15 · arxiv updated 2021/06/16

Abstract

Quantum walk has been regarded as a primitive to universal quantum computation. By using the operations required to describe the single particle discrete-time quantum walk on a position space we demonstrate the realization of the universal set of quantum gates on two- and three-qubit systems. The idea is to utilize the effective Hilbert space of the single qubit and the position space on which it evolves in order to realize multi-qubit states and universal set of quantum gates on them. Realization of many non-trivial gates and engineering arbitrary states is simpler in the proposed quantum walk model when compared to the circuit based model of computation. We will also discuss the scalability of the model and some propositions for using lesser number of qubits in realizing larger qubit systems.

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