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A quantum Fredkin gate

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arxiv 1603.08086 v1 pith:UL32XDUR submitted 2016-03-26 quant-ph

A quantum Fredkin gate

classification quant-ph
keywords quantumcontrolfredkingatebeencircuitsfirstlogic
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Key to realising quantum computers is minimising the resources required to build logic gates into useful processing circuits. While the salient features of a quantum computer have been shown in proof-of-principle experiments, difficulties in scaling quantum systems have made more complex operations intractable. This is exemplified in the classical Fredkin (controlled-SWAP) gate for which, despite theoretical proposals, no quantum analogue has been realised. By adding control to the SWAP unitary, we use photonic qubit logic to demonstrate the first quantum Fredkin gate, which promises many applications in quantum information and measurement. We implement example algorithms and generate the highest-fidelity three-photon GHZ states to-date. The technique we use allows one to add a control operation to a black-box unitary, something impossible in the standard circuit model. Our experiment represents the first use of this technique to control a two-qubit operation and paves the way for larger controlled circuits to be realised efficiently.

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