English

Robust Majorana magic gates via measurements

Mesoscale and Nanoscale Physics 2019-05-01 v2 Superconductivity Quantum Physics

Abstract

π/8\pi/8 phase gates (magic gates or T-gates) are crucial to augment topological systems based on Majorana zero modes to full quantum universality. We present a scheme based on a combination of projective measurements and non-adiabatic evolution that effectively cancels smooth control errors when implementing phase gates in Majorana-based systems. Previous schemes based on adiabatic evolution are susceptible to problems arising from small but finite dynamical phases that are generically present in topologically unprotected gates. A measurement-only approach eliminates dynamical phases. For non-protected gates, however, forced-measurement schemes are no longer effective which leads to low success probabilities of obtaining the right succession of measurement outcomes in a measurement-only implementation. We show how to obtain a viable measurement-based scheme which dramatically increases the success probabilities by evolving the system non-adiabatically with respect to the degenerate subspace in between measurements. We outline practical applications of our scheme in recently proposed quantum computing designs based on Majorana tetrons and hexons.

Cite

@article{arxiv.1812.10498,
  title  = {Robust Majorana magic gates via measurements},
  author = {Torsten Karzig and Yuval Oreg and Gil Refael and Michael H. Freedman},
  journal= {arXiv preprint arXiv:1812.10498},
  year   = {2019}
}

Comments

13 pages, 8 figures. v2: minor updates, added figure of Y-junction

R2 v1 2026-06-23T06:56:44.266Z