English

Anticoherent $k$-planes and coding techniques for a 3-qubit scheme of universal quantum computing

Quantum Physics 2025-09-30 v1 Mathematical Physics math.MP

Abstract

Toponomic quantum computing (TQC) employs rotation sequences of anticoherent kk-planes to construct noise-tolerant quantum gates. In this work, we demonstrate the implementation of generalized Toffoli gates, using kk-planes of spin systems with sk+1s \geq k + 1, and of the Hadamard gate for a 3-qubit system, using a spin s ⁣= ⁣15s \!= \! 15 8-plane. We propose a universal quantum computing scheme for 3-qubit systems (via Hadamard + Toffoli gates) based on coding techniques. A key advantage of this construction is its inherent robustness against noise: apart from reparametrization invariance, our scheme is characterized by immunity to arbitrarily large deformations of the path in (rotational) parameter space.

Keywords

Cite

@article{arxiv.2509.23464,
  title  = {Anticoherent $k$-planes and coding techniques for a 3-qubit scheme of universal quantum computing},
  author = {L. Aragón-Muñoz and C. Chryssomalakos and A. G. Flores-Delgado and V. Rascón-Barajas and I. Vázquez Mota},
  journal= {arXiv preprint arXiv:2509.23464},
  year   = {2025}
}

Comments

8 pages, 3 figures

R2 v1 2026-07-01T06:01:24.130Z