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arxiv: 1602.04767 · v2 · pith:KMY3IFOAnew · submitted 2016-02-15 · 🪐 quant-ph

Double-heralded generation of two-photon-states by spontaneous four-wave-mixing in the presence of noise

classification 🪐 quant-ph
keywords conditionalnoisephoton-numberstateschannelcreateddegradefour-wave-mixing
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We present an experimental method for creating and verifying photon-number states created by non-degenerate, third-order nonlinear-optical photon-pair sources. By using spatially multiplexed, thresholding single-photon detectors and inverting a conditional probability matrix, we determine the photon-number probabilities created through heralded spontaneous four-wave-mixing. The deleterious effects of noise photons on reliable heralding are investigated and shown to degrade the conditional preparation of two-photon number states more than they degrade conditional single-photon states. We derive the equivalence between the presence of unwanted noise in the herald channel and loss in the signal channel of heralded experiments. A procedure for characterizing the noise-photon contributions, and a means of estimating the herald noise-free photon-number distribution is demonstrated.

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