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quantum research and development

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    Researchers run publication-grade quantum graphics on Android phones▼Tested workflow for rendering publication-grade Bloch spheres and quantum circuits on Android Termux using Matplotlib whMmastodonTechnologyMobile3just now

    A tested workflow is being shared for rendering publication-quality Bloch spheres and quantum circuit diagrams on Android devices using Termux and Matplotlib, for cases where a full Qiskit installation fails to build on the platform. The approach lets researchers produce journal-ready quantum visualisations without a desktop Linux or macOS environment, drawing interest from the quantum computing and Python developer communities.

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    Researchers Unveil Quasilinear Quantum Computation Verifier▼Researchers Build Quasilinear Quantum Computation Verifier✉newsSciencePhysics4 h ago

    Researchers have built a quasilinear verifier for quantum computations, a tool designed to check that quantum devices produce correct results without requiring exponentially large classical resources. Verification is one of the central unsolved problems in quantum computing, since users cannot directly confirm outputs of machines they cannot simulate. The development is being reported as a step toward trustworthy quantum cloud services and practical certification of quantum hardware.

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    A new signal processing method has been reported to improve the efficiency of quantum light detection. The development could matter for quantum optics research and technologies that rely on detecting single photons, such as quantum computing and secure communications. Beyond the claim of improved efficiency, no detailed results, measurements, or independent assessments are available yet.

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    Researchers at the University of Rochester are combining light and sound in new ways to probe fundamental questions in physics. The work pairs photons with phonons, opening possibilities for studying quantum phenomena and developing new sensing technologies. Details of the specific experiments and their implications remain limited in the available reporting.

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    Shor's algorithm and the push for post-quantum cryptography●# ITByte : Shor's # Algorithm is a # Quantum algorithm for finding the prime factors of an integer. It was developed inMmastodonSciencePhysics12 d ago

    Shor's algorithm, developed in 1994 by American mathematician Peter Shor, is a quantum algorithm for finding the prime factors of an integer. Its theoretical power threatens widely used encryption based on factoring difficulty, and its existence has prompted a global shift toward post-quantum cryptography as researchers and governments prepare for future quantum computers.

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    New qubit could cut quantum computing errors by 100 times▼This new qubit could be 100 times less error-prone in superfluid quantum computer breakthrough✉newsScience2 d ago

    Researchers report the development of a new type of qubit that could be around 100 times less error-prone than existing designs, using superfluid technology. Error rates are one of the biggest obstacles to building practical quantum computers, so any significant reduction is seen as a meaningful step toward more reliable, scalable quantum machines.

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    Quantum World Congress Puts Maryland at the Center of Quantum●The Quantum World Congress showcases Maryland as the Capital of Quantum✉newsWorldUS Politics2 d ago

    The Quantum World Congress is presenting Maryland as the Capital of Quantum, highlighting the state's growing role in quantum science and technology. State officials are using the event to promote Maryland as a hub for quantum research, investment and industry. The gathering draws attention to the state's push to attract companies and talent in the fast-developing quantum sector.