中文

Local Universality and Structural Certificates for Minimal Fixed-Depth Two-Qutrit Gate Decomposition

量子物理 2026-07-27 v1

摘要

We study a dimension-saturating fixed-core ansatz in which four copies of a fixed, non-tunable two-qutrit core KSU(9)K\in SU(9) are interleaved with five adjustable local layers from L=SU(3)SU(3)L=SU(3)\otimes SU(3). Since dimSU(9)=80\dim SU(9)=80 and 5dimL=805\dim L=80, this is the shortest fixed-core architecture not excluded by parameter counting. We formulate the smooth map ΦK:L5SU(9)\Phi_K:L^5\to SU(9) and use its right-trivialized differential to give verifiable certificates for local universality. We construct an explicit Clifford-word core whose Pauli-label splitting makes the identity-point differential an exact isometry, and we classify all 2304 symplectic actions satisfying the same splitting criterion. We also prove a structural obstruction for an important symmetry class: every complex-symmetric core K=KTK=K^{T}, including every core generated by a time-independent real-symmetric Hamiltonian in the chosen computational basis, has identity-point differential rank at most 78; hence any full-rank certificate for such a core must occur away from that point. We then assess a hardware-motivated superconducting core generated by a noncommuting, temporally asymmetric drive. Direct calculation verifies KscKscTK_{\rm sc}\neq K_{\rm sc}^{\mathsf T}, and the core achieves Favg0.999F_{\rm avg}\ge 0.999 for all 1000 Haar-random targets tested under the stated restart protocol. We also report favorable sampled Jacobian-rank, structured-target, and robustness diagnostics. These results establish local universality at the parameter-counting-minimal, dimension-saturating depth, with an exact Clifford certificate complemented by a hardware-motivated numerical case study. Throughout, we separate exact local certificates from numerical evidence for broader synthesis performance.

引用

@article{arxiv.2607.24129,
  title  = {Local Universality and Structural Certificates for Minimal Fixed-Depth Two-Qutrit Gate Decomposition},
  author = {Yurui Liu and Ruoting Dou and Peng Xu and Xinsheng Tan and Shengjun Wu and Yang Yu and Zeng-Bing Chen},
  journal= {arXiv preprint arXiv:2607.24129},
  year   = {2026}
}

备注

31 pages, 10 figures