English

Topological color code and symmetry-protected topological phases

Quantum Physics 2015-09-04 v2 Strongly Correlated Electrons

Abstract

We study (d1)(d-1)-dimensional excitations in the dd-dimensional color code that are created by transversal application of the RdR_{d} phase operators on connected subregions of qubits. We find that such excitations are superpositions of electric charges and can be characterized by fixed-point wavefunctions of (d1)(d-1)-dimensional bosonic SPT phases with (Z2)d(\mathbb{Z}_{2})^{\otimes d} symmetry. While these SPT excitations are localized on (d1)(d-1)-dimensional boundaries, their creation requires operations acting on all qubits inside the boundaries, reflecting the non-triviality of emerging SPT wavefunctions. Moreover, these SPT-excitations can be physically realized as transparent gapped domain walls which exchange excitations in the color code. Namely, in the three-dimensional color code, the domain wall, associated with the transversal R3R_{3} operator, exchanges a magnetic flux and a composite of a magnetic flux and loop-like SPT excitation, revealing rich possibilities of boundaries in higher-dimensional TQFTs. We also find that magnetic fluxes and loop-like SPT excitations exhibit non-trivial three-loop braiding statistics in three dimensions as a result of the fact that the R3R_{3} phase operator belongs to the third-level of the Clifford hierarchy. We believe that the connection between SPT excitations, fault-tolerant logical gates and gapped domain walls, established in this paper, can be generalized to a large class of topological quantum codes and TQFTs.

Keywords

Cite

@article{arxiv.1503.07208,
  title  = {Topological color code and symmetry-protected topological phases},
  author = {Beni Yoshida},
  journal= {arXiv preprint arXiv:1503.07208},
  year   = {2015}
}

Comments

16 pages, 11 figures (v2, title changed, "SPT phases" to "symmetry-protected topological phases", according to the journal policy)

R2 v1 2026-06-22T09:01:15.818Z