Optimization and performance investigation of 1-Toffoli gate quantum full adders for spin-torque-based n-qubit architecture

Anant Kulkarni,Majid Haghparast, Brajesh Kumar Kaushik

Optical and Quantum Electronics(2023)

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摘要
Quantum computing (QC) is suitable for reversible computing due to its inherent parallel processing ability and fast speed. It also helps to address the issue of high-power dissipation in classical computing. Moreover, QC gates are the sequence of elementary operations such as single-qubit rotation and two-qubit entanglement. Elementary quantum operations are required to be reduced for the realization of complex computing. In this paper, optimization of 1-Toffoli gate-based quantum full adders (QFAs) in terms of the number of elementary operations with the help of quantum library Ry, Rz, √(SWAP) is carried out. Moreover, the performance of two different 1-Toffoli QFAs is investigated in terms of execution time, fidelity, and number of electrons required to realize the QFAs. Improvement in fidelity is 0.7
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关键词
Quantum computing,Quantum gates,Quantum circuit optimization,Reversible computing,Spin-torque
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