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Direct generation of tailored pulse-mode entanglement

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arxiv 1910.00598 v2 pith:C7M765YO submitted 2019-10-01 quant-ph physics.optics

Direct generation of tailored pulse-mode entanglement

classification quant-ph physics.optics
keywords quantumdirectenableentanglementgenerationinformationstatestates
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Photonic quantum technology increasingly uses frequency encoding to enable higher quantum information density and noise resilience. Pulsed time-frequency modes (TFM) represent a unique class of spectrally encoded quantum states of light that enable a complete framework for quantum information processing. Here, we demonstrate a technique for direct generation of entangled TFM-encoded states in single-pass, tailored downconversion processes. We achieve unprecedented quality in state generation---high rates, heralding efficiency and state fidelity---as characterised via highly resolved time-of-flight fibre spectroscopy and two-photon interference. We employ this technique in a four-photon entanglement swapping scheme as a primitive for TFM-encoded quantum protocols.

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