activity
20172022
most citedExperimental realization of a multiplexed quantum memory with 225 individually accessible memory cells

180 citations · 264 across the 4 of their papers we have counts for

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6 papers · 1 filter

quant-ph20229 cited

Quantum-Memory-Enhanced Preparation of Nonlocal Graph States

Sheng Zhang, Yu-Kai Wu, Chang Li +3

Graph states are an important class of multipartite entangled states. Previous experimental generation of graph states and in particular the Greenberger-Horne-Zeilinger (GHZ) state…

quant-ph202120 cited

Multicell Atomic Quantum Memory as a Hardware-Efficient Quantum Repeater Node

Chang Li, Sheng Zhang, Yukai Wu +3

For scalable quantum communication and networks, a key step is to realize a quantum repeater node that can efficiently connect different segments of atom-photon entanglement using…

quant-ph2019

High dimensional entanglement between a photon and a multiplexed atomic quantum memory

Chang Li, Yukai Wu, Wei Chang +4

Multiplexed quantum memories and high-dimensional entanglement can improve the performance of quantum repeaters by promoting the entanglement generation rate and the quantum commun…

quant-ph2019

Quantum Communication between Multiplexed Atomic Quantum Memories

Chang Li, Nan Jiang, Yukai Wu +4

The use of multiplexed atomic quantum memories (MAQM) can significantly enhance the efficiency to establish entanglement in a quantum network. In the previous experiments, individu…

quant-ph201955 cited

Experimental realization of 105-qubit random access quantum memory

N. Jiang, Y. -F. Pu, W. Chang +3

Random access memory is an indispensable device for classical information technology. Analog to this, for quantum information technology, it is desirable to have a random access qu…

quant-ph2017180 cited

Experimental realization of a multiplexed quantum memory with 225 individually accessible memory cells

Y. -F. Pu, N. Jiang, W. Chang +3

To realize long-distance quantum communication and quantum network, it is required to have multiplexed quantum memory with many memory cells. Each memory cell needs to be individua…