English

Universal Parity Quantum Computing

Quantum Physics 2022-11-03 v2

Abstract

We propose a universal gate set for quantum computing with all-to-all connectivity and intrinsic robustness to bit-flip errors based on parity encoding. We show that logical controlled phase gate and RzR_z rotations can be implemented in parity encoding with single-qubit operations. Together with logical RxR_x rotations, implemented via nearest-neighbor controlled-NOT gates and an RxR_x rotation, these form a universal gate set. As the controlled phase gate requires only single-qubit rotations, the proposed scheme has advantages for several cornerstone quantum algorithms, e.g., the quantum Fourier transform. We present a method to switch between different encoding variants via partial on-the-fly encoding and decoding.

Keywords

Cite

@article{arxiv.2205.09505,
  title  = {Universal Parity Quantum Computing},
  author = {Michael Fellner and Anette Messinger and Kilian Ender and Wolfgang Lechner},
  journal= {arXiv preprint arXiv:2205.09505},
  year   = {2022}
}

Comments

9 pages, 6 figures