Content area

Abstract

Large-scale quantum networks promise to enable secure communication, distributed quantum computing, enhanced sensing and fundamental tests of quantum mechanics through the distribution of entanglement across nodes. Moving beyond current two-node networks requires the rate of entanglement generation between nodes to exceed the decoherence (loss) rate of the entanglement. If this criterion is met, intrinsically probabilistic entangling protocols can be used to provide deterministic remote entanglement at pre-specified times. Here we demonstrate this using diamond spin qubit nodes separated by two metres. We realize a fully heralded single-photon entanglement protocol that achieves entangling rates of up to 39 hertz, three orders of magnitude higher than previously demonstrated two-photon protocols on this platform. At the same time, we suppress the decoherence rate of remote-entangled states to five hertz through dynamical decoupling. By combining these results with efficient charge-state control and mitigation of spectral diffusion, we deterministically deliver a fresh remote state with an average entanglement fidelity of more than 0.5 at every clock cycle of about 100 milliseconds without any pre- or post-selection. These results demonstrate a key building block for extended quantum networks and open the door to entanglement distribution across multiple remote nodes.

Details

Title
Deterministic delivery of remote entanglement on a quantum network
Author
Humphreys, Peter C 1 ; Kalb, Norbert 1 ; Morits, Jaco P J 1 ; Schouten, Raymond N 1 ; Vermeulen, Raymond F L 1 ; Twitchen, Daniel J; Markham, Matthew; Hanson, Ronald

 QuTech and Kavli Institute of Nanoscience, Delft University of Technology, Delft, The Netherlands 
Pages
268-273,273A-273M
Section
LETTER
Publication year
2018
Publication date
Jun 14, 2018
Publisher
Nature Publishing Group
ISSN
00280836
e-ISSN
14764687
Source type
Scholarly Journal
Language of publication
English
ProQuest document ID
2067321389
Copyright
Copyright Nature Publishing Group Jun 14, 2018