Verification of a resetting protocol for an uncontrolled superconducting qubit
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.
Keywords
Cite
@article{arxiv.1911.12536,
title = {Verification of a resetting protocol for an uncontrolled superconducting qubit},
author = {Ming Gong and Feihu Xu and Zheng-Da Li and Zizhu Wang and Yu-Zhe Zhang and Yulin Wu and Shaowei Li and Youwei Zhao and Shiyu Wang and Chen Zha and Hui Deng and Zhiguang Yan and Hao Rong and Futian Liang and Jin Lin and Yu Xu and Cheng Guo and Lihua Sun and Anthony D. Castellano and Chengzhi Peng and Yu-Ao Chen and Xiaobo Zhu and Jian-Wei Pan},
journal= {arXiv preprint arXiv:1911.12536},
year = {2020}
}
Comments
9 pages, 6 figures, 1 table + Supplementary Materials