Teleportation implementation of non-deterministic quantum logic operations by using linear optical elements
arXiv:quant-ph/0110177 · doi:10.1103/PhysRevA.65.064305
Abstract
We present a feasible scheme to implement the non-deterministic quantum logic operation of Knill, Laflamme and Milburn (Nature, 409, 46-52(2001)) by using a teleportation protocol, which requires only single-photon sources, linear optical elements and photon detectors.
to appear in PRA
References in corpus (5)
Cited by in corpus (13)
- Review article: Linear optical quantum computing
- Experimental Controlled-NOT Logic Gate for Single Photons in the Coincidence Basis
- Two-photon interference: the Hong-Ou-Mandel effect
- Scheme for the generation of an entangled four-photon W-state
- Linear optics quantum Toffoli and Fredkin gates
- Experimental nonlinear sign shift for linear optics quantum computation
- Demonstration of Feed-Forward Control for Linear Optics Quantum Computation
- Thermal entanglement and teleportation in a two-qubit Heisenberg chain with Dzyaloshinski-Moriya anisotropic antisymmetric interaction
- Conditional linear-optical measurement schemes generate effective photon nonlinearities
- Linear optical implementation of a single mode quantum filter and generation of multi-photon polarization entangled state
- Linear optics substituting scheme for multi-mode operations
- Concatenated beam splitters, optical feed-forward and the nonlinear sign gate
- Simulation of quantum gates by postselection of interference experiments in multi-port beam-splitter (BS) configurations