4.8 Article

Experimental Demonstration of a Multifunctional All-Optical Quantum State Transfer Machine

期刊

PHYSICAL REVIEW LETTERS
卷 126, 期 21, 页码 -

出版社

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevLett.126.210507

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资金

  1. Innovation Program of Shanghai Municipal Education Commission [2021-01-0700-08-E00100]
  2. National Natural Science Foundation of China [11874155, 91436211, 11374104]
  3. Basic Research Project of Shanghai Science and Technology Commission [20JC1416100]
  4. Natural Science Foundation of Shanghai [17ZR1442900]
  5. Minhang Leading Talents [201971]
  6. Program of Scientific and Technological Innovation of Shanghai [17JC1400401]
  7. National Basic Research Program of China [2016YFA0302103]
  8. Shanghai Municipal Science and Technology Major Project [2019SHZDZX01]
  9. Shanghai Sailing Program [21YF1410800]
  10. 111 project [B12024]
  11. ECNU Academic Innovation Promotion Program for Excellent Doctoral Students [YBNLTS2020-046]

向作者/读者索取更多资源

The study demonstrates the experimental realization of the partially disembodied quantum state transfer protocol on an all-optical platform, linking the all-optical quantum teleportation and the optimal 1 -> N coherent state cloning protocols. These three protocols are implemented in a single all-optical machine, showing potential in building a multifunctional quantum information system.
Quantum information protocol with quantum resources shows a great advantage in substantially improving security, fidelity, and capacity of information processing. Various quantum information protocols with diverse functionalities have been proposed and implemented. However, in general, the present quantum information system can only carry out a single information protocol or deal with a single communication task, which limits its practical application in the future. Therefore, it is essential to develop a multifunctional platform compatible with multiple different quantum information protocols. In this Letter, by utilizing an all-optical platform consisting of a gain-tunable parametric amplifier, a beam splitter, and an entanglement source, we experimentally realize the partially disembodied quantum state transfer protocol, which links the all-optical quantum teleportation protocol and the optimal 1 -> N coherent state cloning protocol. As a result, these three protocols, which have different physical essences and functionalities, are implemented in a single all-optical machine. In particular, we demonstrate that the partially disembodied quantum state transfer protocol can enhance the state transfer fidelity compared with all-optical quantum teleportation under the same strength of entanglement. Our all-optical quantum state transfer machine paves a way to implement the multifunctional quantum information system.

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