A fast quantum circuit for addition with few qubits

Author:

Takahashi Y.,Kunihiro N.

Abstract

We show how to construct a fast quantum circuit for computing the sum of two $n$-bit binary numbers with few qubits. The constructed circuit uses $O(n/\log n)$ ancillary qubits and its depth and size are $O(\log n)$ and $O(n)$, respectively. The number of ancillary qubits is asymptotically less than that in Draper et al.'s quantum carry-lookahead adder, and the depth and size are asymptotically the same as those of Draper et al.'s. Moreover, we show that the circuit is useful for constructing an efficient quantum circuit for Shor's factoring algorithm.

Publisher

Rinton Press

Subject

Computational Theory and Mathematics,General Physics and Astronomy,Mathematical Physics,Nuclear and High Energy Physics,Statistical and Nonlinear Physics,Theoretical Computer Science

Cited by 8 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Reducing Depth of Quantum Adder using Ling Structure;2023 IFIP/IEEE 31st International Conference on Very Large Scale Integration (VLSI-SoC);2023-10-16

2. A Higher radix architecture for quantum carry-lookahead adder;Scientific Reports;2023-09-28

3. T‐depth reduction method for efficient SHA‐256 quantum circuit construction;IET Information Security;2022-06-28

4. FX Asian Option Pricing Using Quantum Computers;SSRN Electronic Journal;2022

5. Quantum arithmetic operations based on quantum fourier transform on signed integers;International Journal of Quantum Information;2020-09

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