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- W2807641514 abstract "Bell state measurement (BSM) plays crucial roles in photonic quantum information processing. The standard linear optical BSM is based on Hong-Ou-Mandel interference where two photons meet and interfere at a beamsplitter (BS). However, a generalized two-photon interference is not based on photon-photon interaction, but interference between two-photon probability amplitudes. Therefore, it might be possible to implement BSM without interfering photons at a BS. Here, we investigate a linear optical BSM scheme which does not require two photon overlapping at a BS. By unleashing the two photon coexistence condition, it can be symmetrically divided into two parties. The symmetrically dividable property suggests informationally symmetrical BSM between remote parties without a third party. We also present that our BSM scheme can be used for Bell state preparation between remote parties without a third party. Since our BSM scheme can be easily extended to multiple photons, it can be useful for various quantum communication applications." @default.
- W2807641514 created "2018-06-13" @default.
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- W2807641514 date "2018-10-26" @default.
- W2807641514 modified "2023-10-02" @default.
- W2807641514 title "Informationally symmetrical Bell state preparation and measurement" @default.
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- W2807641514 doi "https://doi.org/10.1364/oe.26.029539" @default.
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