Authors
Ryan Babbush, Dominic W Berry, Ian D Kivlichan, Annie Y Wei, Peter J Love, Alán Aspuru-Guzik
Publication date
2016/3/24
Journal
New Journal of Physics
Volume
18
Issue
3
Pages
033032
Publisher
IOP Publishing
Description
We introduce novel algorithms for the quantum simulation of fermionic systems which are dramatically more efficient than those based on the Lie–Trotter–Suzuki decomposition. We present the first application of a general technique for simulating Hamiltonian evolution using a truncated Taylor series to obtain logarithmic scaling with the inverse of the desired precision. The key difficulty in applying algorithms for general sparse Hamiltonian simulation to fermionic simulation is that a query, corresponding to computation of an entry of the Hamiltonian, is costly to compute. This means that the gate complexity would be much higher than quantified by the query complexity. We solve this problem with a novel quantum algorithm for on-the-fly computation of integrals that is exponentially faster than classical sampling. While the approaches presented here are readily applicable to a wide class of fermionic models, we focus on …
Total citations
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Scholar articles
R Babbush, DW Berry, ID Kivlichan, AY Wei, PJ Love… - New Journal of Physics, 2016
R Babbush, DW Berry, ID Kivlichan, AY Wei, PJ Love… - arXiv preprint arXiv:1506.01020, 2015