Quantum Circuit Synthesis using a New Quantum Logic Gate Library of NCV Quantum Gates

被引:0
作者
Zhiqiang Li
Sai Chen
Xiaoyu Song
Marek Perkowski
Hanwu Chen
Wei Zhu
机构
[1] Yangzhou University,College of Information Engineering
[2] Portland State University,Department of ECE
[3] Southeast University,School of Computer Science and Engineering
来源
International Journal of Theoretical Physics | 2017年 / 56卷
关键词
Circuit synthesis; Multi-valued logic; Controlled-square-root-of-NOT gate; Reversible logic; Quantum computing;
D O I
暂无
中图分类号
学科分类号
摘要
Since Controlled-Square-Root-of-NOT (CV, CV‡) gates are not permutative quantum gates, many existing methods cannot effectively synthesize optimal 3-qubit circuits directly using the NOT, CNOT, Controlled-Square-Root-of-NOT quantum gate library (NCV), and the key of effective methods is the mapping of NCV gates to four-valued quantum gates. Firstly, we use NCV gates to create the new quantum logic gate library, which can be directly used to get the solutions with smaller quantum costs efficiently. Further, we present a novel generic method which quickly and directly constructs this new optimal quantum logic gate library using CNOT and Controlled-Square-Root-of-NOT gates. Finally, we present several encouraging experiments using these new permutative gates, and give a careful analysis of the method, which introduces a new idea to quantum circuit synthesis.
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页码:1023 / 1038
页数:15
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