English

Depth reduction for quantum Clifford circuits through Pauli measurements

Quantum Physics 2018-05-31 v1

Abstract

Clifford circuits play an important role in quantum computation. Gottesman and Chuang proposed a gate teleportation protocol so that a quantum circuit can be implemented by the teleportation circuit with specific ancillary qubits. In particular, an nn-qubit Clifford circuit UU can be implemented by preparing an ancillary stabilizer state (IU)Φ+n(I\otimes U)|\Phi^+\rangle^{\otimes n} for teleportation and doing a Pauli correction conditioned on the measurement. In this paper, we provide an alternative procedure to implement a Clifford circuit through Pauli measurements, by preparing O(1)O(1) ancillas that are Calderbank-Shor-Steane (CSS) stabilizer states. That is to say, O(1)O(1) CSS states are sufficient to implement any Clifford circuit. As an application to fault-tolerant quantum computation, any Clifford circuit can be implemented by O(1)O(1) steps of Steane syndrome extraction if clean CSS stabilizer states are available.

Keywords

Cite

@article{arxiv.1805.12082,
  title  = {Depth reduction for quantum Clifford circuits through Pauli measurements},
  author = {Yi-Cong Zheng and Ching-Yi Lai and Todd A. Brun and Leong-Chuan Kwek},
  journal= {arXiv preprint arXiv:1805.12082},
  year   = {2018}
}

Comments

9 pages, comments are most welcome

R2 v1 2026-06-23T02:13:38.364Z