Heralded entangling quantum gates are an essential element for the implementation of large-scale optical quantum computation. Yet, the experimental demonstration of genuine heralded entangling gates with free-flying output photons in linear optical system, was hindered by the intrinsically probabilistic source and double-pair emission in parametric down-conversion. Here, by using an on-demand single-photon source based on a semiconductor quantum dot embedded in a micro-pillar cavity, we demonstrate a heralded controlled-NOT (CNOT) operation between two single photons for the first time. To characterize the performance of the CNOT gate, we estimate its average quantum gate fidelity of (87.8±1.2)%. As an application, we generated event-ready Bell states with a fidelity of (83.4±2.4)%. Our results are an important step towards the development of photon-photon quantum logic gates.
@article{arxiv.2010.14788,
title = {Heralded non-destructive quantum entangling gate with single-photon sources},
author = {Jin-Peng Li and Xuemei Gu and Jian Qin and Dian Wu and Xiang You and Hui Wang and Christian Schneider and Sven Höfling and Yong-Heng Huo and Chao-Yang Lu and Nai-Le Liu and Li Li and Jian-Wei Pan},
journal= {arXiv preprint arXiv:2010.14788},
year = {2021}
}
Comments
main text: 5 pages, 3 figures; supplement: 18 pages, 2 figure, 2 tables; comments are welcome!