The Optimization and Application of 3-Bit Hermitian Gates and Multiple Control Toffoli Gates

被引:0
|
作者
Li H.-S. [1 ]
机构
[1] Guangxi Normal University, College of Electronic Engineering, Guilin
基金
中国国家自然科学基金;
关键词
Multiple control Toffoli (MCT) gate; quantum algorithm; quantum circuit; quantum comparator; quantum optimizing method;
D O I
10.1109/TQE.2022.3210705
中图分类号
学科分类号
摘要
The well-known 3-bit Hermitian gate (a Toffoli gate) has been implemented using Clifford+T circuits. Compared with the Peres gate, its implementation circuit requires more controlled-not (cnot) gates. However, the Peres gate is not Hermitian. This article reports four 3-bit Hermitian gates named LI gates, whose realized circuits have the same T-count, T-depth, and cnot-count as the Peres gate. Furthermore, two decomposition methods of a multiple-control Toffoli (MCT) gate are proposed for different primary optimization goals. Then, we design the equality, less-than, and full comparators with the minimum circuit width using proposed Hermitian gates and optimized MCT gates. A fault-tolerant circuit is required for robust quantum computing. Clifford+T circuits are accepted solutions for fault-tolerant implementation. Considering T-count, T-depth, cnot-count, and circuit width as the primary optimization goals, we design the optimized Clifford+T circuits of three comparators using LI gates and optimized MCT gates. Comparison and analysis show that the proposed comparators have better overall performances for T-count, T-depth, cnot-count, and circuit width than the best-known comparators without quantum measurements. © 2020 IEEE.
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