English

Efficient synthesis of universal Repeat-Until-Success circuits

Quantum Physics 2015-03-11 v2 Emerging Technologies

Abstract

Recently, it was shown that Repeat-Until-Success (RUS) circuits can achieve a 2.52.5 times reduction in expected TT-count over ancilla-free techniques for single-qubit unitary decomposition. However, the previously best known algorithm to synthesize RUS circuits requires exponential classical runtime. In this paper we present an algorithm to synthesize an RUS circuit to approximate any given single-qubit unitary within precision ε\varepsilon in probabilistically polynomial classical runtime. Our synthesis approach uses the Clifford+TT basis, plus one ancilla qubit and measurement. We provide numerical evidence that our RUS circuits have an expected TT-count on average 2.52.5 times lower than the theoretical lower bound of 3log2(1/ε)3 \log_2 (1/\varepsilon) for ancilla-free single-qubit circuit decomposition.

Cite

@article{arxiv.1404.5320,
  title  = {Efficient synthesis of universal Repeat-Until-Success circuits},
  author = {Alex Bocharov and Martin Roetteler and Krysta M. Svore},
  journal= {arXiv preprint arXiv:1404.5320},
  year   = {2015}
}

Comments

15 pages, 10 figures; reformatted and minor edits; added Fig. 2 to visualize the density of z-rotations implementable via RUS protocols

R2 v1 2026-06-22T03:55:13.076Z