Design and optimization of the multi-valued quantum adder
Jing-wen Ai, Ting-yan Zhang, Shih-Wen Lu, Ming-Qiang Bai, Zhiwen Mo · Physica Scripta · 2025
Abstract Multi-valued quantum logic circuits possess the ability to store and process more intricate information than binary quantum logic circuits. A key component within numerous intricate computational circuits is the multi-valued quantum adder circuit. The primary objective of this paper is to propose a multi-valued quantum full adder and an optimal replacement of two multi-valued Toffoli gate cascades which can effectively reduce the quantum cost of the circuit. Constructed from multi-valued 1-qudit and 2-qudit M-S gates, this adder circuit is designed by effectively setting the control conditions of multi-valued quantum Toffoli gates. For a quaternary quantum adder based on this M-S gate architecture, the number of QC, 1-qudit gates, and 2-qudit gates are 48.6%, 46.2%, and 54.2%, respectively, of the previous design. Additionally, NCI and NGO are consistent with prior adder. It shows the potential applications of complex quantum reversible logic circuits.