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Universality of Z3 parafermions via edge-mode interaction and quantum simulation of topological space evolution with Rydberg atoms

Benhemou, Asmae; Angkhanawin, Toonyawat; Adams, Charles S.; Browne, Dan E.; Pachos, Jiannis K.

Universality of Z3 parafermions via edge-mode interaction and quantum simulation of topological space evolution with Rydberg atoms Thumbnail


Authors

Asmae Benhemou

Dan E. Browne

Jiannis K. Pachos



Abstract

Parafermions are Zn generalizations of Majorana quasiparticles, with fractional non-Abelian statistics. They can be used to encode topological qudits and perform Clifford operations by their braiding. Here we investigate the generation of quantum gates by allowing Z3 parafermions to interact in order to achieve universality. In particular, we study the form of the nontopological gate that arises through direct short-range interaction of the parafermion edge modes in a Z3 parafermion chain. We show that such an interaction gives rise to a dynamical phase gate on the encoded ground space, generating a non-Clifford gate which can be tuned to belong to even levels of the Clifford hierarchy. We illustrate how to access highly noncontextual states using this dynamical gate. Finally, we propose an experiment that simulates the braiding and dynamical evolutions of the Z3 topological states with Rydberg atom technology.

Citation

Benhemou, A., Angkhanawin, T., Adams, C. S., Browne, D. E., & Pachos, J. K. (2023). Universality of Z3 parafermions via edge-mode interaction and quantum simulation of topological space evolution with Rydberg atoms. Physical Review Research, 5(2), Article 023076. https://doi.org/10.1103/physrevresearch.5.023076

Journal Article Type Article
Acceptance Date Nov 2, 2022
Online Publication Date May 1, 2023
Publication Date 2023-07
Deposit Date Jan 4, 2024
Publicly Available Date Jan 4, 2024
Journal Physical Review Research
Electronic ISSN 2643-1564
Publisher American Physical Society
Peer Reviewed Peer Reviewed
Volume 5
Issue 2
Article Number 023076
DOI https://doi.org/10.1103/physrevresearch.5.023076
Public URL https://durham-repository.worktribe.com/output/2079696

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