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    Quantum simulator captures process that can break quark strings▼Quantum simulator captures a strange process that can break quark strings✉newsSciencePhysicsjust now

    Researchers have used a quantum simulator to observe a process capable of breaking quark strings, the bonds that bind quarks together inside particles. The simulation offers a rare window into string-breaking, a phenomenon in quantum chromodynamics that is otherwise impossible to track directly because quarks cannot be isolated. Physicists say such simulators could help probe questions that classical computers cannot handle.

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    Dark Side of the Moon Gets a New Meaning in Physics Talk▼Dark Side of the Moon just took on a whole new meaning ... https://www. sciencedaily.com/releases/2026 /09/260921081054.MmastodonScience5just now

    Science fans are sharing a ScienceDaily report under the joke that Pink Floyd's 'Dark Side of the Moon' has taken on a whole new meaning. The post tags quantum physics, quantum mechanics and astrophysics, suggesting the story concerns a lunar or astrophysical finding described in quantum terms. The exact content of the report is not detailed in the available information.

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    Quantum Computer Operates in Space for the First Time●For The First Time, a Quantum Computer Has Operated in Space✉newsSciencePhysics5 h ago

    A quantum computer has been operated in space for the first time, according to a report by ScienceAlert. The milestone suggests quantum computing technology can function in the harsh conditions of orbit, opening the door to space-based quantum research and potentially quantum communication networks between satellites. Details about the hardware involved and the mission responsible have not yet been widely reported.

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    Researchers Steer Quantum Vortices Using Atomic Rails▼Researchers At Nanoarchitectonics Center Guide Quantum Vortices With Atomic Rails✉newsSciencePhysicsjust now

    Researchers at the International Center for Nanoarchitectonics report guiding quantum vortices using atomic-scale rails, a technique that could improve control over quantum phenomena in materials. The work suggests new ways to direct superconducting or superfluid vortex behavior at the nanoscale, with potential implications for quantum technologies. Details of the findings remain limited in early coverage.