paper

Verification of a resetting protocol for an uncontrolled superconducting qubit

arXiv:1911.12536 · doi:10.1038/s41534-020-00329-3

Abstract

Quantum resetting protocols allow a quantum system to be sent to a state in the past by making it interact with quantum probes when neither the free evolution of the system nor the interaction is controlled. We experimentally verify the simplest non-trivial case of a quantum resetting protocol, known as the protocol, with five superconducting qubits, testing it with different types of free evolutions and target-probe interactions. After projection, we obtained a reset state fidelity as high as , and the process fidelity was found to be . We also implemented 100 randomly-chosen interactions and demonstrated an average success probability of for and for , experimentally confirmed the nonzero probability of success for unknown interactions; the numerical simulated values are about . Our experiment shows that the simplest quantum resetting protocol can be implemented with current technologies, making such protocols a valuable tool in the eternal fight against unwanted evolution in quantum systems.

9 pages, 6 figures, 1 table + Supplementary Materials