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Practical entanglement concentration of nonlocal polarization-spatial hyperentangled states with linear optics
Authors:Zi-Hang Wang  Xiao-Yuan Wu  Wen-Xuan Yu  Faris Alzahrani  Aatef Hobiny  Fu-Guo Deng
Affiliation:1.Department of Physics, Applied Optics Beijing Area Major Laboratory,Beijing Normal University,Beijing,China;2.NAAM-Research Group, Department of Mathematics, Faculty of Science,King Abdulaziz University,Jeddah,Saudi Arabia
Abstract:We present some different hyperentanglement concentration protocols (hyper-ECPs) for nonlocal N-photon systems in partially polarization-spatial hyperentangled states with known parameters, resorting to linear optical elements only, including those for hyperentangled Greenberger–Horne–Zeilinger-class states and the ones for hyperentangled cluster-class states. Our hyper-ECPs have some interesting features. First, they require only one copy of nonlocal N-photon systems and do not resort to ancillary photons. Second, they work with linear optical elements, neither Bell-state measurement nor two-qubit entangling gates. Third, they have the maximal success probability with only a round of entanglement concentration, not repeating the concentration process some times. Fourth, they resort to some polarizing beam splitters and wave plates, not unbalanced beam splitters, which make them more convenient in experiment.
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