量子隐形传态
超密集编码
隐形传送
物理
量子信道
量子网络
量子力学
无隐形传态定理
自由度(物理和化学)
量子态
量子
拓扑(电路)
量子信息
数学
组合数学
作者
Shengshuai Liu,Yinghui Lv,Xutong Wang,Jiabin Wang,Yanbo Lou,Jietai Jing
标识
DOI:10.1103/physrevlett.132.100801
摘要
Quantum teleportation, disembodied transfer of the unknown quantum state between two locations, has been experimentally demonstrated for both discrete and continuous variable states in one degree of freedom (DOF). Generally, multiple DOFs are needed to fully characterize a quantum state. Therefore, to implement intact quantum teleportation, multiple DOFs of quantum state should be teleported simultaneously. Recently, teleporting a single photon encoded in two DOFs has been experimentally demonstrated in discrete variable regime. However, the teleportation of more than two DOFs remains unexplored. Here, by utilizing continuous variable hyperentanglement in four DOFs (azimuthal and radial indexes of Laguerre-Gaussian mode, frequency, and polarization), we experimentally demonstrate deterministic all-optical quantum teleportation of four DOFs. Moreover, we experimentally construct 24 parallel teleportation channels. Our results pave the way for deterministically implementing multiple-DOF quantum communication protocols.
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