Cite this article:
Wang Xin-Wen, Liu Xiang, Fang Mao-Fa. Efficient scheme for teleportation of an unknown N-atom state via a two-atom entangled state without the Bell-state measurement in cavity QEDJ. Chin. Phys. B, 2006, 15(4): 676-680.
| Wang Xin-Wen, Liu Xiang, Fang Mao-Fa. Efficient scheme for teleportation of an unknown N-atom state via a two-atom entangled state without the Bell-state measurement in cavity QEDJ. Chin. Phys. B, 2006, 15(4): 676-680. |
Efficient scheme for teleportation of an unknown N-atom state via a two-atom entangled state without the Bell-state measurement in cavity QED
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Abstract
We propose a scheme for teleportation of an unknown N-atom state using a two-atom entangled state within a cavity QED and show the feasibility in experiment. Our scheme does not involve the Bell-state measurement and is insensitive to the cavity decay, which is important from the experimental point of view. Another feature of the scheme is that teleporting a N-atom state just requires a small amount of entanglement (i.e. a two-atom entangled state) and less classical bits (two bits). -
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