13. Free-space Optical Multiplexing Scheme Based on Acousto-optic Deflector (AOD) with Orbital Angular Momentum.
Z.-C. Liao, Q. Sun, Y. Hu, N. Jiang*. Optics Express. 33(11), 23605(2025).
12. Enhanced Quantum Entanglement Detection of General Two Qubits Systems Based on Modified CNN-BiLSTM Model.
Q. Sun, Z.-C.Liao, N. Jiang*. Advanced Quantum Technologies. 8, 2400373(2025).
11. High-Accuracy Entanglement Detection via a Convolutional Neural Network with Noise Resistance.
Q. Sun, Y.-Y. Song, Z.-C. Liao, N. Jiang*. Appl. Sci. 14(20), 9418(2024).
10. Quantum-Memory-Enhanced Preparation of Nonlocal Graph States.
S. Zhang*, Y.-K.Wu*, C. Li, N. Jiang, Y.-F. Pu, and L.-M.Duan. Physical Review Letters 128, 080501(2022)
9. Multicell Atomic Quantum Memory as a Hardware-Efficient Quantum Repeater Node.
C. Li, S. Zhang, Y.-K. Wu, N.Jiang, Y.-F. Pu, and L.-M. Duan. PRX.Quantum 2,040307(2021).
8. Experimental Demonstration of Memory-enhanced Scaling for Entanglement Connection of Quantum Repeater Segments.
Y.-F. Pu*, S. Zhang*, Y.-K. Wu, N.Jiang, W. Chang, C. Li, and L.-M.Duan.Nature Photonics 15,374–378 (2021).
7. Quantum Communication between Multiplexed Atomic Quantum Memories.
C. Li, N. Jiang, Y.-K.Wu, W. Chang, Y.-F. Pu, S. Zhang, and L.-M.Duan. Physical Review Letters 124,240504(2020).
6. High-dimensional entanglement between a photon and a multiplexed atomic quantum Memory.
C. Li, Y.-K. Wu, W. Chang, S.Zhang,Y.-F. Pu, N. Jiang, and L.-M. Duan. Physical Review A 101,032312 (2020).
5. Long-distance entanglement between a multiplexed quantum memory and a telecom photon.
W. Chang, C. Li, Y.-K. Wu, N. Jiang,S. Zhang, Y.-F.Pu, X.-Y. Chang, L.-M. Duan. Physical Review X 9 041033(2019).
4. Experimental realization of 105-qubit random access quantum memory.
N.Jiang*, Y.-F. Pu*,W. Chang,C. Li, S. Zhang, L.-M. Duan. npj.Quantum Information 5,28(2019).
3. Experimental entanglement of 25 individually accessible atomic quantum interfaces.
Y.-F. Pu, Y.-K. Wu, N. Jiang, W.Chang, C. Li, S. Zhang, L.-M. Duan. Science Advances, 4(4):eaar3931(2018).
2. Experimental realization of amultiplexed quantum memory with 225 individuallyaccessible memory cells.
Y.-F. Pu, N. Jiang, W.Chang, H.-X. Yang, C. Li, S. Zhang, L.-M. Duan. Nature Communications 8, 15359 (2017).
1. Simpleand efficient all-optical productionof spinor condensates.
J. Jiang, L. Zhao, M. Webb, N.Jiang, H. Yang, and Y. Liu. Physical Review A 88, 033620(2013).
其他
基于卷积神经网络的高效量子态层析方法
孙乾, 蒋楠*,北京师范大学学报(自然科学版) 60(01),2024.
金纳米核-壳结构(Au@SiO_2)对铕元素的发光增强机制研究
宋妍妍, 龙江迷, 赵国营, 李永良, 蒋楠*, 陈晓波. 北京师范大学学报(自然科学版) 59(06), 2023.