Engineering of Multi-Dimensional Entangled States of Photon Pairs Using Hyper-Entanglement
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Abstract
Multi-dimensional entangled states have been proven to be more powerful in some quantum information processes. Down-converted photons from spontaneous parametric down-conversion are used to engineer multi-dimensional entangled states. A kind of multi-degree multi-dimensional Greenberger--Horne--Zeilinger states can also be generated. The hyper-entangled photons are entangled in energy-time, polarization and orbital angular momentum, which is proven to be useful to increase the dimension of systems and to investigate higher-dimensional entangled states.
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REN Xi-Feng, GUO Guo-Ping, LI Jian, LI Chuan-Feng, GUO Guang-Can. Engineering of Multi-Dimensional Entangled States of Photon Pairs Using Hyper-Entanglement[J]. Chin. Phys. Lett., 2006, 23(3): 552-555.
REN Xi-Feng, GUO Guo-Ping, LI Jian, LI Chuan-Feng, GUO Guang-Can. Engineering of Multi-Dimensional Entangled States of Photon Pairs Using Hyper-Entanglement[J]. Chin. Phys. Lett., 2006, 23(3): 552-555.
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REN Xi-Feng, GUO Guo-Ping, LI Jian, LI Chuan-Feng, GUO Guang-Can. Engineering of Multi-Dimensional Entangled States of Photon Pairs Using Hyper-Entanglement[J]. Chin. Phys. Lett., 2006, 23(3): 552-555.
REN Xi-Feng, GUO Guo-Ping, LI Jian, LI Chuan-Feng, GUO Guang-Can. Engineering of Multi-Dimensional Entangled States of Photon Pairs Using Hyper-Entanglement[J]. Chin. Phys. Lett., 2006, 23(3): 552-555.
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