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    Quantum Computer Operates in Space for the First Time▼For The First Time, a Quantum Computer Has Operated in Space✉newsSciencePhysics1 h ago

    Researchers have run a quantum computer in space for the first time, marking a milestone in quantum technology beyond Earth. The demonstration suggests quantum computing and communication systems could one day operate aboard satellites, where conditions differ sharply from ground-based laboratories. Scientists say the achievement could pave the way for space-based quantum networks and new experiments impossible on Earth, though details of the mission and hardware remain limited.

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    UCLA has been awarded $75 million in grants from the National Science Foundation to advance quantum technology research. The funding will support the university's work in quantum science, an area seen as key to future computing, communications and sensing. The announcement was reported by the Daily Bruin, the university's student newspaper.

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    Quantum memory stores single photons for record time▼Quantum memory stores single photons for record time in major leap towards a quantum internet✉newsTechnologyInternet8 h ago

    Researchers report a quantum memory that has stored single photons for a record length of time, a result described as a major step towards building a quantum internet. Long-lived storage of individual light particles is a key requirement for quantum repeaters, the devices needed to send entangled signals across continental distances. The achievement is drawing attention as a milestone in quantum communication research.

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    Nanjing University Reports Higher Quantum Key Rates for Three-User Networks▼Nanjing University Boosts Quantum Key Rates For Three-user Networks✉newsSciencePhysics1 h ago

    Researchers at Nanjing University report an advance in quantum key distribution, achieving boosted key rates for networks serving three users simultaneously. The work targets practical multi-user quantum communication, where distributing secure keys to several parties at once has so far limited performance. Higher key rates could make quantum-secured communication networks more viable for real-world deployment.