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Programmable fusion advances scalable photonic graph states

Original: Deterministic and programmable fusion for the scalable generation of photonic graph states

Researchers publishing in Nature report a deterministic and programmable fusion technique for generating photonic graph states at scale. Photonic graph states are entangled light states central to photonic quantum computing, networking and repeaters. Making fusion deterministic rather than probabilistic, while keeping it programmable, is presented as a step toward scalable quantum photonics. The finding matters because scaling entangled photon sources has been a key bottleneck for optical quantum technologies.

Why now: A Nature paper addresses a major bottleneck in photonic quantum computing, drawing attention from the quantum technology community

Naturephotonic quantum computinggraph states

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