Recognizing Small-Circuit Structure in Two-Qubit Operators and Timing Hamiltonians to Compute Controlled-Not Gates
Quantum Physics
2009-11-10 v3
Abstract
This work proposes numerical tests which determine whether a two-qubit operator has an atypically simple quantum circuit. Specifically, we describe formulae, written in terms of matrix coefficients, characterizing operators implementable with exactly zero, one, or two controlled-not (CNOT) gates and all other gates being one-qubit. We give an algorithm for synthesizing two-qubit circuits with optimal number of CNOT gates, and illustrate it on operators appearing in quantum algorithms by Deutsch-Josza, Shor and Grover. In another application, our explicit numerical tests allow timing a given Hamiltonian to compute a CNOT modulo one-qubit gates, when this is possible.
Cite
@article{arxiv.quant-ph/0308045,
title = {Recognizing Small-Circuit Structure in Two-Qubit Operators and Timing Hamiltonians to Compute Controlled-Not Gates},
author = {Vivek V. Shende and Stephen S. Bullock and Igor L. Markov},
journal= {arXiv preprint arXiv:quant-ph/0308045},
year = {2009}
}
Comments
4 pages, circuit examples, an algorithm and a new application (v3)