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arXiv 2013-05-15 DOI 10.1103/PhysRevLett.111.150501 0 views

Linear Optical Quantum Computing in a Single Spatial Mode

Humphreys, Peter C. · Metcalf, Benjamin J. · Spring, Justin B. · Moore, Merritt · Jin, Xian-Min · Barbieri, Marco · Kolthammer, W. Steven · Walmsley, Ian A.

Original · EN

We present a scheme for linear optical quantum computing using time-bin encoded qubits in a single spatial mode. We show methods for single-qubit operations and heralded controlled phase (CPhase) gates, providing a sufficient set of operations for universal quantum computing with the Knill-Laflamme-Milburn scheme. Our scheme is suited to available photonic devices and ideally allows arbitrary numbers of qubits to be encoded in the same spatial mode, demonstrating the potential for time-frequency modes to dramatically increase the quantum information capacity of fixed spatial resources. As a test of our scheme, we demonstrate the first entirely single spatial mode implementation of a two-qubit quantum gate and show its operation with an average fidelity of 0.84+-0.07.

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