Integrated spin-wave quantum memory

Author:

Zhu Tian-Xiang12,Su Ming-Xu12,Liu Chao12,Liu Yu-Ping123,Wang Chao-Fan12,Liu Pei-Xi12,Han Yong-Jian123,Zhou Zong-Quan123ORCID,Li Chuan-Feng123,Guo Guang-Can123

Affiliation:

1. CAS Key Laboratory of Quantum Information, University of Science and Technology of China , Hefei 230026 , China

2. CAS Center for Excellence in Quantum Information and Quantum Physics, University of Science and Technology of China , Hefei 230026 , China

3. Hefei National Laboratory, University of Science and Technology of China , Hefei 230088 , China

Abstract

ABSTRACT Photonic integrated quantum memories are essential for the construction of scalable quantum networks. Spin-wave quantum storage, which can support on-demand retrieval with a long lifetime, is indispensable for practical applications, but has never been demonstrated in an integrated solid-state device. Here, we demonstrate spin-wave quantum storage based on a laser-written waveguide fabricated in a 151Eu3+:Y2SiO5 crystal, using both the atomic frequency comb and noiseless photon-echo protocols. Qubits encoded with single-photon-level inputs are stored and retrieved with a fidelity of ${94.9\%\pm 1.2\%}$, which is far beyond the maximal fidelity that can be obtained with any classical device. Our results underline the potential of laser-written integrated devices for practical applications in large-scale quantum networks, such as the construction of multiplexed quantum repeaters in an integrated configuration and high-density transportable quantum memories.

Funder

National Key Research and Development Program of China

Innovation Program for Quantum Science and Technology

National Natural Science Foundation of China

Students’ Innovation and Entrepreneurship Foundation of the University of Science and Technology of China

China Postdoctoral Science Foundation

Publisher

Oxford University Press (OUP)

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