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, Anirban Chowdhury, et al.
PRX Quantum
Sergey Bravyi, Guillaume Duclos-Cianci, et al.
Quantum Information and Computation
Sergey Bravyi, Andrew Cross, et al.
QIP 2024