量子电子学报 ›› 2026, Vol. 43 ›› Issue (4): 549-563.doi: 10.3969/j.issn.1007-5461.2026.04.005

• 量子线路设计自动化 • 上一篇    下一篇

基于超导系统的三比特杂化托佛利门一步实现方案

康逸豪 , 苏奇平 , 杨垂平 *   

  1. 杭州师范大学物理学院, 浙江 杭州 311121
  • 收稿日期:2025-12-23 修回日期:2026-01-24 出版日期:2026-07-28 发布日期:2026-07-27
  • 通讯作者: E-mail: yangcp@hznu.edu.cn E-mail: E-mail: yangcp@hznu.edu.cn
  • 基金资助:
    国家重点研发计划 (2024YFA1408900)

One⁃step implementation of a three⁃qubit hybrid Toffoli gate based on a superconducting system

KANG Yihao, SU Qiping, YANG Chuiping   

  1. School of Physics, Hangzhou Normal University, Hangzhou 311121, China
  • Received:2025-12-23 Revised:2026-01-24 Published:2026-07-28 Online:2026-07-27
  • About author:康逸豪 ( 1993 - ), 福建漳州人, 博士, 讲师, 主要从事量子计算方面的研究。E-mail: yihaokang@hznu.edu.cn

摘要: 托佛利(Toffoli)门是量子态操控和量子算法所需的一类重要量子逻辑门。针对量子计算中托佛利门实现复杂度高的问题,提出了一种基于超导系统实现三比特托佛利门的新型理论方案。通过设计由两个微波腔与四能级超导人工原子组成的杂化系统,利用色散耦合与二阶微扰理论导出有效哈密顿量,构建了实现托佛利门操作的演化子空间。该方案通过单步操作即可完成三比特控制逻辑操作,显著提升运算效率。数值模拟表明,即使考虑微波腔与非目标能级耦合、腔间串扰及退相干效应,托佛利门操作仍能保持较高的平均保真度。此外,该设计思路可推广至其他量子系统,为三比特杂化托佛利门的高效实现提供了普适性框架。

关键词: 量子计算, 超导系统, 杂化量子门, 托佛利门

Abstract: The Toffoli gate is a crucial class of quantum logic gates essential for quantum state manipulation and quantum algorithms. Addressing the challenge of high implementation complexity for the Toffoli gate in quantum computation, we propose a novel theoretical scheme for realizing a three-qubit Toffoli gate based on a superconducting system. By designing a hybrid system comprising two microwave cavities and a four-level superconducting artificial atom, and utilizing dispersive coupling and second-order perturbation theory to derive an effective Hamiltonian, we successfully construct an evolution subspace enabling the Toffoli gate operation. This scheme accomplishes the three-qubit controlled logic operation in a single step, significantly enhancing computational efficiency. Numerical simulations demonstrate that the Toffoli gate operation maintains relatively high average fidelity even when considering microwave cavity coupling to non-target levels, inter-cavity crosstalk, and decoherence effects. Furthermore, this design is extendable to other quantum systems, providing a universal framework for the efficient implementation of three-qubit hybrid Toffoli gates.

Key words: quantum computation, superconducting system, hybrid quantum gate, Toffoli gate

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