Optimal algorithms for learning quantum phase states
Srinivasan Arunachalam, Sergey Bravyi, et al.
TQC 2023
Fermionic linear optics is a limited form of quantum computation which is known to be efficiently simulable on a classical computer. We revisit and extend this result by enlarging the set of available computational gates: in addition to unitaries and measurements, we allow dissipative evolution governed by a Markovian master equation with linear Lindblad operators. We show that this more general form of fermionic computation is also simu- lable efficiently by classical means. Given a system of N fermionic modes, our algorithm simulates any such gate in time O(N3) while a single-mode measurement is simulated in time O(N2). The steady state of the Lindblad equation can be computed in time O(N3). © Rinton Press.
Srinivasan Arunachalam, Sergey Bravyi, et al.
TQC 2023
Sergey Bravyi, David Gosset, et al.
Physical Review Letters
Sergey Bravyi, David Gosset, et al.
FOCS 2019
Sergey Bravyi, Robert Raussendorf
Physical Review A - AMO