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quantum computers
Trends
- 1Quantum Computer Operates in Space for the First Time▼For The First Time, a Quantum Computer Has Operated in Space
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.
- 2UCLA lands $75 million in NSF quantum technology grants▼UCLA receives $75 million in NSF grants for quantum technology
UCLA has been awarded $75 million in grants from the US National Science Foundation to advance quantum technology research. The funding will support work in quantum computing, sensing and related fields at the university. The announcement highlights the growing federal investment in quantum science and positions UCLA among the leading US institutions in the field.
- 3Thales, Bull and CEA join forces on quantum software for French military●#Thales #Bull #CEA #logiciel #ordinateurs #quantiques #armée #française #Thales #Bull #CEA #software #computers #quantum
Thales, Bull and the French Alternative Energies and Atomic Energy Commission (CEA) are to work together on software for quantum computers, in a partnership linked to the French armed forces. The announcement highlights France's push to build sovereign quantum computing capabilities for defence applications, drawing attention from technology and science commentators.
- 4Intel puts 70 staff on quantum computing push●Intel has 70 people working on quantum computing. Its CEO is betting on the next frontier
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.
- 5Quantum computer simulates matter popping into existence▼Quantum computer simulates matter “popping into existence”
Researchers have used a quantum computer to simulate particles of matter appearing out of the vacuum, reproducing a phenomenon predicted by quantum field theory in which energy can briefly convert into matter-antimatter pairs. The experiment offers a new way to study fundamental physics that is otherwise out of reach of traditional computers, and physicists say such simulations could help probe processes occurring in the early universe.
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Researchers are working on three proposed fixes to protect Bitcoin from future quantum computers, which could theoretically break the cryptography securing bitcoin wallets. The debate centres on how to migrate coins to quantum-resistant addresses and what to do about vulnerable old holdings. The topic is drawing attention as quantum computing advances accelerate concerns across the crypto industry.
- 7Quantum simulator captures process that breaks quark strings▼Quantum simulator captures a strange process that can break quark strings
Researchers report that a quantum simulator has captured a strange process capable of breaking quark strings, the bonds that hold quarks together inside particles. The experiment offers a way to observe string-breaking, a phenomenon in quantum chromodynamics that is otherwise out of reach for classical computers and conventional particle accelerators. Physicists say such simulations could deepen understanding of how matter behaves under extreme conditions.
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Security publication BankInfoSecurity is asking whether organizations' networks are prepared for post-quantum cryptography, the shift to encryption methods that can withstand attacks from future quantum computers. The discussion comes as regulators and standards bodies push industries to begin migrating away from currently used public-key encryption before quantum capabilities make it vulnerable.
- 9Scientists Observe a Single Quantum of Sound Vanish●Scientists Just Watched a Single Quantum of Sound Vanish for the First Time
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.
- 10Thales, Bull and CEA develop quantum computing software for French military●# Thales # Bull # CEA # logiciel # ordinateurs # quantiques # armée # française # Thales # Bull # CEA # software # compu
Thales, Bull and the French Alternative Energies and Atomic Energy Commission (CEA) are working on quantum computing software for the French armed forces, according to a report by Clubic. The cooperation combines the industrial and research expertise of the three organisations to advance quantum technologies with potential defence applications. The story is circulating among French-speaking tech and science observers.
- 11AI 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
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.
- 12IonQ 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
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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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.
- 14Neutral atoms lead the quantum qubit race, says Hassinger▼Sebastian Hassinger (The New Quantum Era): why neutral atoms lead the qubit race for now
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.
- 15IonQ Announces Major Quantum Breakthrough, Investors Weigh In▼IonQ Just Announced a Major Breakthrough. Should Investors Buy the Stock Now?
Quantum computing company IonQ has announced what it describes as a major technical breakthrough, prompting renewed attention on its stock. Financial commentators are debating whether the announcement makes the shares a buy now, with excitement about quantum computing's long-term potential weighed against the company's high valuation and still-early commercialization. Retail investors appear to be reassessing positions as the news circulates.
- 16StarkWare Challenge Cuts Quantum-Safe Bitcoin Cost Estimate by 79%●StarkWare Challenge Lowers Quantum-Safe Bitcoin Compute Cost Estimate by 79% An AI-assisted coding contest organized by
An AI-assisted coding contest organized by StarkWare and partners has cut the estimated GPU compute cost of a quantum-safe Bitcoin transaction from $320 to roughly $63, a 79% reduction. The result suggests post-quantum protection for Bitcoin could be far cheaper than earlier estimates, easing concerns about the cost of future quantum-resistant upgrades.
- 17DRDO And Startup Develop Cryogenic Refrigerator For Quantum Computers▼DRDO And Startup Build 20 MK Refrigerator For Quantum Computers
India's Defence Research and Development Organisation, working with a startup, has built a 20 millikelvin refrigerator, the extreme cooling unit required to operate quantum computers. Such dilution refrigerators bring quantum processors to temperatures near absolute zero and have previously been dominated by a handful of foreign suppliers, making the development a step toward domestic quantum computing capability.
- 18US Stock Futures Rise on Iran Diplomacy Hopes and AI Rally▼Dow, S&P 500, Nasdaq Futures Climb Amid Iran Diplomacy Hopes, AI Rally: IONQ, VKTX, INFQ, BB Stocks In Focus
Dow, S&P 500 and Nasdaq futures climbed as investors weighed hopes for diplomatic progress on Iran alongside continued strength in artificial intelligence stocks. Quantum computing firm IonQ, biotech Voyager Therapeutics (VKTX) and Broadcom-related names were among the stocks drawing attention as markets opened the week on a cautiously optimistic note.
- 19Peter Schiff warns quantum hack could make him short Bitcoin▼Peter Schiff Warns Quantum Hack Could Make Him ‘Short Everything’ On Bitcoin, Sees $600K Cycle Top
Economist and long-time Bitcoin critic Peter Schiff says a quantum computing hack of the cryptocurrency could prompt him to short the entire Bitcoin market. At the same time, he suggested Bitcoin's current cycle could peak at around $600,000. The comments blend his usual bearishness on crypto with an unusually large price target, drawing attention from both Bitcoin supporters and skeptics across financial media.
- 20Quantum Memory Breakthrough Enables Random Access Across Seven Cells▼Random access quantum memory lets one processor select among seven storage cells
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.