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Single-pass generation of widely-tunable frequency-domain entangled photon pairs

<p><strong>We demonstrate a novel technique that generates entangled photon pairs in the frequency domain by using a single nonlinear crystal. The technique is based on the simultaneous occurrence of two spontaneous parametric down-conversion processes satisfying independent type-II collinear pseudo-phase matching conditions in periodically poled stoichiometric lithium tantalate. The generated photon pairs exhibit nondegenerate Hong-Ou-Mandel interference, indicating the presence of quantum entanglement in the frequency domain.</strong> <strong>This method provides a light source capable of wide-range quantum sensing and quantum imaging or high-dimensional quantum processing.</strong></p>

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