English

Novel constructions for the fault-tolerant Toffoli gate

Quantum Physics 2013-03-18 v1

Abstract

We present two new constructions for the Toffoli gate which substantially reduce resource costs in fault-tolerant quantum computing. The first contribution is a Toffoli gate requiring Clifford operations plus only four T=exp(iπσz/8)T = \exp(i\pi\sigma^z/8) gates, whereas conventional circuits require seven TT gates. An extension of this result is that adding nn control inputs to a controlled gate requires 4n4n TT gates, whereas the best prior result was 8n8n. The second contribution is a quantum circuit for the Toffoli gate which can detect a single σz\sigma^z error occurring with probability pp in any one of eight TT gates required to produce the Toffoli. By post-selecting circuits that did not detect an error, the posterior error probability is suppressed to lowest order from 4p4p (or 7p7p, without the first contribution) to 28p228p^2 for this enhanced construction. In fault-tolerant quantum computing, this construction can reduce the overhead for producing logical Toffoli gates by an order of magnitude.

Keywords

Cite

@article{arxiv.1212.5069,
  title  = {Novel constructions for the fault-tolerant Toffoli gate},
  author = {Cody Jones},
  journal= {arXiv preprint arXiv:1212.5069},
  year   = {2013}
}

Comments

5 pages, 4 figures