Quantum storage of entangled photons at telecom wavelengths in a crystal

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Ming-Hao Jiang
Wenyi Xue
Qian He
Yu-Yang An
Xiaodong Zheng
Wen-Jie Xu
Yu-Bo Xie
Yanqing Lu
Shining Zhu
Xiao-Song Ma
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[1] Nanjing University,National Laboratory of Solid
[2] University of Science and Technology of China,state Microstructures, School of Physics, College of Engineering and Applied Sciences, Collaborative Innovation Center of Advanced Microstructures
[3] Hefei National Laboratory,Synergetic Innovation Center of Quantum Information and Quantum Physics
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Quantum storage and distribution of entanglement are the key ingredients for realizing a global quantum internet. Compatible with existing fiber networks, telecom-wavelength entangled photons and corresponding quantum memories are of central interest. Recently, 167Er3+ ions have been identified as a promising candidate for an efficient telecom quantum memory. However, to date, no storage of entangled photons, the crucial step of quantum memory using these promising ions, 167Er3+, has been reported. Here, we demonstrate the storage and retrieval of the entangled state of two telecom photons generated from an integrated photonic chip. Combining the natural narrow linewidth of the entangled photons and long storage time of 167Er3+ ions, we achieve storage time of 1.936 μs, more than 387 times longer than in previous works. Successful storage of entanglement in the crystal is certified using entanglement witness measurements. These results pave the way for realizing quantum networks based on solid-state devices.
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