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Resource analysis of quantum computing with noisy qubits for Shor's factoring algorithms

Authors
Ha, JinyoungLee, JonghyunHeo, Jun
Issue Date
Feb-2022
Publisher
SPRINGER
Keywords
Quantum algorithm; Quantum resource analysis; Quantum computation; Quantum gates; Quantum error correction
Citation
QUANTUM INFORMATION PROCESSING, v.21, no.2
Indexed
SCIE
SCOPUS
Journal Title
QUANTUM INFORMATION PROCESSING
Volume
21
Number
2
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/140123
DOI
10.1007/s11128-021-03398-1
ISSN
1570-0755
Abstract
We decompose two implementations of Shor's algorithm for prime factorization into universal gate units at the logical level and predict the number of physical qubits and execution time when surface codes are used. Logical qubit encoding using a rotated surface code and logical qubits with all-to-all connectivity are assumed. We express the number of physical qubits and execution time in terms of the bit length of the number to be factorized and error rate of the physical quantum gate. We confirm the relationship between the number of qubits and the execution time by analyzing two algorithms using various bit lengths and physical gate error rates .
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