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Quantum scissors: Teleportation of single-mode optical states by means of a nonlocal single photon
Europhysics Letters (EPL) · 2003 · Vol. 64(1) · pp. 1–7
С. А. Бабичев✉(University of Konstanz)Jonas Ries(University of Konstanz)A. I. Lvovsky(University of Konstanz)
Abstract
We employ the quantum state of a single photon entangled with the vacuum (|1,0>-|0,1>), generated by a photon incident upon a symmetric beam splitter, to teleport single-mode quantum states of light by means of the Bennett protocol. Teleportation of coherent states results in truncation of their Fock expansion to the first two terms. We analyze the teleported ensembles by means of homodyne tomography and obtain fidelities of up to 99 per cent for low source state amplitudes. This work is an experimental realization of the quantum scissors device proposed by Pegg, Phillips and Barnett (Phys. Rev. Lett. 81, 1604 (1998))
Quantum Information and CryptographyQuantum Mechanics and ApplicationsQuantum optics and atomic interactionsPhysicsQuantum mechanicsQuantum teleportationPhotonFock spaceBeam splitterQuantum opticsQuantum stateTeleportationQuantum channel
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375
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8.49
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References
28
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References
Teleporting an unknown quantum state via dual classical and Einstein-Podolsky-Rosen channels
Physical Review Letters · 1993 · 13,438 citations
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