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Quantum Systems

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    Military researchers are discussing the obstacles standing in the way of fielding quantum technology, covering challenges that range from hardware stability and scaling to transitioning laboratory systems into operational defense use. The conversation highlights how quantum sensing, computing and communications could affect national security, and why significant engineering and scientific barriers must still be overcome before these capabilities can be widely deployed by armed forces.

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    Intel puts 70 staff on quantum computing push●Intel has 70 people working on quantum computing. Its CEO is betting on the next frontier✉newsBusinessStartups3 d ago

    Intel has revealed it has a team of about 70 employees working on quantum computing, with CEO Pat Gelsinger betting the technology will be the next major frontier in computing. The move signals Intel is positioning itself alongside other tech giants pursuing quantum systems despite the field still being years away from commercial impact.

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    Scientists Observe a Single Quantum of Sound Vanish●Scientists Just Watched a Single Quantum of Sound Vanish for the First Time✉newsSciencePhysics4 d ago

    Researchers report the first direct observation of a single phonon—the smallest possible unit of sound—disappearing, according to a new physics study. The feat means measuring sound at its most fundamental quantum level, in a single isolated unit, rather than in waves made of countless phonons. Scientists say the result opens a window onto how quantum behaviour works in mechanical systems, with potential implications for quantum computing and sensing technologies.

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    AI computes record 9-loop physics amplitude▼AI beats human record, independently computes 9-loop physics amplitude | Most real-world calculations stop at 2, 3 loops | Inshorts✉newsSciencePhysics4 d ago

    An AI system has reportedly set a record by independently computing a 9-loop physics amplitude, a Feynman diagram calculation far beyond typical human work. Most real-world perturbative calculations in quantum field theory stop at 2 or 3 loops due to their complexity. The result highlights how machine learning is beginning to automate some of the most demanding mathematical tasks in theoretical physics.

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    Security publication BankInfoSecurity is asking whether organizations' networks are prepared for post-quantum cryptography, the transition to encryption methods resistant to attacks by future quantum computers. The discussion reflects growing pressure on enterprises and governments to inventory cryptographic systems and begin migrating before quantum-capable machines can break current standards.

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    Federal funding backs FSU quantum communication testbed▼Federal funding supports FSU quantum communication testbed for real-world conditions✉newsTechnology3 d ago

    Florida State University has received federal funding to build a quantum communication testbed designed to operate in real-world conditions. The facility will allow researchers to test quantum networking technology outside controlled lab environments, an important step toward practical secure communication systems. The announcement highlights growing federal investment in quantum research as part of broader national technology priorities.

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    IonQ Places Three Superion 256 Systems With NVIDIA, FIU and SDT▼IonQ Lined Up 3 Superion 256 Systems With NVIDIA, FIU, and SDT. Here’s Where the Stock Could Go✉newsBusinessFinance4 d ago

    Quantum computing company IonQ has lined up three of its Superion 256 systems with NVIDIA, Florida International University and SDT, according to a Yahoo Finance report. The report also looks at where IonQ's stock could head next. Investors are watching the deals as a sign of growing commercial demand for IonQ's quantum technology, though the stock's trajectory remains a matter of speculation.

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    Neutral atoms lead the quantum qubit race, says Hassinger▼Sebastian Hassinger (The New Quantum Era): why neutral atoms lead the qubit race for now✉newsSciencePhysics4 d ago

    Sebastian Hassinger, host of The New Quantum Era podcast, argues that neutral-atom platforms currently hold the lead among quantum computing qubit technologies. He points to the approach's combination of scalability, long coherence times and flexible connectivity as reasons it is outpacing rival architectures such as superconducting and trapped-ion systems, at least for now.

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    Technology leaders are being urged to begin migrating corporate systems to post-quantum cryptography, encryption methods designed to withstand attacks from future quantum computers. The argument is that quantum advances could eventually break today's standard encryption, and that organisations which delay the transition risk exposing sensitive data. CIOs are advised to inventory cryptographic assets and plan upgrades now.

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    Quantum Memory Breakthrough Enables Random Access Across Seven Cells▼Random access quantum memory lets one processor select among seven storage cells✉newsSciencePhysics4 d ago

    Researchers have demonstrated a random access quantum memory system in which a single quantum processor can select among seven storage cells, rather than reading stored quantum information sequentially. The result matters for scaling quantum networks and modular quantum computers, where fast, selective retrieval of quantum states is a key engineering hurdle. Details on the research team and the specific physical platform used were not included in the available report.

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    Quantum-like math may explain biology without quantum effects●Biology might not be quantum, but its math is quantumlike https://www.quantamagazine.org/biology-might-not-be-quantum-buMmastodonSciencePhysics24 d ago

    Quanta Magazine reports that while quantum effects in biology remain unproven, the mathematics used to model biological systems increasingly resembles quantum formalism. Researchers are applying quantum-like mathematical frameworks to describe how living systems behave, bridging physics and biology without claiming organisms actually exploit quantum mechanics. The piece is drawing attention on tech and science discussion forums, where readers are debating whether these tools reveal deep parallels or are just convenient analogies.

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    BofA initiates IonQ at Buy, backing its chips-over-lasers approach▼IonQ gets initated at Buy as BofA backs its chips-over-lasers approach✉newsTechnologySemiconductors3 d ago

    Bank of America has initiated coverage of quantum computing company IonQ with a Buy rating, endorsing the firm's decision to build quantum systems using chip-based technology rather than laser-based approaches. The analyst call puts IonQ in the spotlight among quantum hardware developers, as investors weigh which technical route will win out in the emerging quantum computing market.

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    Scientists explore links between biology and quantum states●While Jurassic Park taught us that violence and technology are not good bedfellows, it may turn out that biology and quaMmastodonScience76 h ago

    Discussion is growing around the idea that quantum-like states may play a meaningful role in living systems, overturning the cautionary picture painted by Jurassic Park about mixing nature and technology. Commenters point to potentially illuminating parallels between the living world and the quantum realm, suggesting biology and quantum phenomena could be compatible after all, though the post offers little concrete detail on the underlying research.

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    Reinforcement learning improves trapped-ion quantum computing▼Machine learning optimizes trapped-ion quantum computing – Reinforcement learning beats state-of-the-art techniques forMmastodonScience1146 min ago

    Researchers at the Max Planck Institute for Gravitational Physics report that reinforcement learning outperforms state-of-the-art techniques for shuttling ions in trapped-ion quantum computers. The machine learning approach optimizes how ions are moved within the hardware, a key bottleneck for scaling these systems. The findings are described in a Physical Review Research paper.

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    Caltech physicists measure quantum energy ladder predicted 40 years ago▼Caltech physicists finally measure a quantum energy ladder predicted 40 years ago✉newsSciencePhysics45 min ago

    Physicists at Caltech report they have measured a quantum energy ladder, a stepped structure of energy levels first predicted by theory around four decades ago. The achievement confirms a long-standing theoretical prediction and required precise experimental techniques to observe. Physicists say such measurements deepen understanding of quantum systems and could inform future work in quantum science.

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    Sovereign Tech Fund relaunches resilience programme for open source●Wir starten das # SovereignTechResilience Programm neu mit vier weiteren Dienstleistungen für kritische # OpenSource -PrMmastodonTechnologySoftware611 h ago

    Germany's Sovereign Tech Fund is relaunching its Sovereign Tech Resilience programme, adding four new services for critical open source projects: memory safety, post-quantum encryption, software supply chain security, and compliance with the EU Cyber Resilience Act. The move aims to strengthen the security and long-term maintenance of digital infrastructure that many public and private systems rely on.

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    Schrödinger's equation marks 100 years of quantum insight▼100 years ago, Schrödinger’s equation shed light on quantum physics – scientists use it today to fine-tune chemical reactions✉newsSciencePhysics45 min ago

    One hundred years after Erwin Schrödinger formulated his famous equation, physicists and chemists are marking the anniversary of a breakthrough that underpins modern quantum mechanics. The equation describes how quantum systems evolve, and scientists today rely on it to model and fine-tune chemical reactions with remarkable precision. Commentators note that a century-old piece of mathematics remains a working tool across physics, chemistry and materials science.

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    NATO Plans Increased Investment in Quantum Defense Technology▼NATO Seeks To Invest In More Quantum Technology For Defense Systems✉newsTechnology10 h ago

    NATO is looking to expand its investment in quantum technology for defense systems, according to a Forbes report. The move reflects the alliance's broader push to keep pace with emerging technologies that could affect military communications, sensing and computing. Quantum capabilities are increasingly viewed as strategically important amid heightened global security competition.

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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 inMmastodonSciencePhysics146 min 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, and that is credited with prompting a global shift toward post-quantum cryptography, as researchers and governments prepare security systems resistant to future quantum computers.

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    Decoherence Found to Suppress Quantum Tunneling in Universe Study▼Decoherence Suppresses Quantum Tunneling In Universe Study✉newsSciencePhysics4 h ago

    A new physics study reports that decoherence — the process by which quantum systems lose coherence through interaction with their environment — suppresses quantum tunneling in a cosmological context. The finding suggests tunneling effects may be far weaker in the early universe than idealized quantum models predict, with potential implications for theories of cosmic inflation and phase transitions in the early cosmos.

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    Russia becomes campaign issue in Latvia as Quantum Systems buys aircraft developer▼Russia is a campaign issue in Latvia + Quantum Systems acquires aircraft developer✉newsScienceSpace Policy6 h ago

    In Latvia, Russia policy has moved to the centre of election campaigning, with parties staking out positions amid continued regional concern over Moscow. Separately, German drone maker Quantum Systems has acquired an aircraft developer, expanding its capabilities in the fast-growing European defence and uncrewed aviation sector. Both stories point to heightened attention on security and the defence industry across Europe.

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    Charles Black is leading research at the Co-design Center for Quantum Advantage (C2QA) focused on building scalable quantum computing systems. The effort is part of a US national quantum initiative aimed at overcoming hardware barriers that currently limit the size and reliability of quantum computers. Further details of the research's findings and timeline have not been disclosed.

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    NSA Announces Post-Quantum Cryptography Push for National Security●NSA Announces Post-Quantum Cryptography Measures to Safeguard National Security Systems Ag✉newsSciencePhysics45 min ago

    The US National Security Agency has announced new post-quantum cryptography measures intended to protect national security systems from future quantum computing threats. The move reflects growing concern that quantum computers could eventually break current encryption, prompting agencies and contractors to begin migrating to quantum-resistant algorithms.

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    Open Source Tools Shape Access to Quantum Computing▼Quantum Computing: Architecture, Access, and Open Source Tools | Open Source For You - technology✉newsTechnologySoftware1 d ago

    A technology feature examines how quantum computing is structured, from its underlying architecture to the ways developers can access quantum systems, with attention to open source tools lowering the barrier to entry. The piece reflects growing interest in making quantum development more widely available outside large corporate and academic labs.

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    01 Quantum Wins US Patent for Quantum-Safe Secure AI▼01 Quantum Awarded U.S. Patent #12,744,764 for Quantum-Safe Secure AI Technology✉newsTechnology2 d ago

    01 Quantum has been awarded U.S. Patent #12,744,764 covering its quantum-safe secure AI technology. The patent protects methods for securing artificial intelligence systems against threats posed by quantum computing, an area of growing concern as quantum machines edge closer to breaking conventional encryption. The company says the award strengthens its position in the emerging post-quantum security market, where demand for quantum-resistant protection of AI workloads is rising among governments and enterprises.

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    Current Cryptography Falls Short of Quantum-Resistant Standards●Cryptograph Solutions are Limited Compared to Quantum-Resistant Algorithms✉newsSciencePhysics7 h ago

    The NSA is highlighting that today's cryptographic solutions offer limited protection compared with new quantum-resistant algorithms, which are being developed to withstand attacks from future quantum computers. The message underscores ongoing efforts to migrate government and industry systems to post-quantum encryption before quantum capabilities mature.

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    MIT Develops Quantum Sensors That Measure Multiple Properties at Once●Multitasking quantum sensors can measure several properties at once✉newsSciencePhysics14 h ago

    Researchers at MIT have demonstrated quantum sensors capable of measuring several physical properties simultaneously, rather than one at a time. The multitasking approach could make sensing devices more efficient and compact, with potential uses in energy systems, navigation, and fundamental physics research. The work is drawing attention from the scientific community as a step toward more versatile quantum technology.

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    Federal agencies already making decisions on quantum computing▼Federal agencies are already making decisions about quantum computing✉newsTechnology1 d ago

    US federal agencies are reportedly moving ahead with concrete decisions on quantum computing, covering adoption, procurement and preparedness for quantum-era cybersecurity. The development signals that quantum technology is shifting from research interest to operational planning across government, with agencies weighing both the opportunities of quantum systems and the security risks posed by future quantum decryption capabilities.

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    Zinc oxide quantum dots speed charge detection for spin qubits●Zinc oxide quantum dots enable faster charge detection, laying groundwork for spin qubits✉newsSciencePhysics1 d ago

    Researchers report that quantum dots made of zinc oxide allow much faster detection of electron charge states, a key step toward building spin qubits for quantum computing. The material's properties make readout quicker than in conventional systems, potentially helping quantum devices operate at higher speeds.

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    Oak Ridge lab opens new quantum and battery research facility●ORNL’s new 100,000-square-foot facility pushes the frontiers of quantum computing, battery tech✉newsSciencePhysics2 d ago

    Oak Ridge National Laboratory has opened a new 100,000-square-foot research facility aimed at advancing quantum computing and battery technology. The building expands the Tennessee lab's capacity for work on next-generation energy storage and quantum systems, areas seen as critical to US scientific and industrial competitiveness.

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    Researchers have announced a new method capable of detecting hidden order within quantum systems, according to a report from Quantum Zeitgeist. The approach reportedly allows scientists to uncover patterns in quantum states that were previously difficult to observe. Details about the research team, the specific technique, and where the work was published remain limited in the available reporting.