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.@IBM reveals latest quantum processors—IBM Quantum Loon and IBM Quantum Nighthawk—and all future chips on our quantum development roadmap are being fabricated at the Albany NanoTech Complex (@CNSE) using 300mm semiconductor wafer technology: ibm.co/6012BMukr #QDC25
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IBM Research retweeted
Introducing “Tools for Quantum Advantage,” a new course from IBM Quantum highlighting the tools necessary for getting the most out of modern quantum computers and bringing useful quantum computing to the world: piped.video/watch?v=VUKaBVEC…
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Quantum error mitigation and correction aren't separate paths. They're part of a continuum. Our latest blog explores hybrid QEM/QEC methods that can improve reliability while reducing sampling overhead on the path to fault-tolerant quantum computing: ibm.co/6015ETeVb
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Today, @IBM and @LockheedMartin, together with @ETH_en Zurich, the Swiss Federal Institute of Technology, launched a new quantum innovation hub in Switzerland: ibm.co/6011ETGGT The new hub will soon host the country’s first IBM Quantum System Two
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IBM Research retweeted
AI is unlocking new insights about the Moon. 🌙 @IBM and @NASA are open-sourcing the NASA-IBM Lunar Foundation Model, one of the first publicly available AI models built for scientific lunar exploration. Learn more below 🧵
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A team led by @ClevelandClinic, @riken_en, and @IBM has been named a finalist for the 2026 @TheOfficialACM Gordon Bell Prize, one of HPC's highest honors, for its 12,635-atom protein simulation, the largest demonstrated on a quantum computer: ibm.co/6010ETB20
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Meet Granite 4.2, IBM’s latest family of open models purpose-built for enterprise agentic AI. With new native reasoning capabilities, Granite 4.2 can plan, reason, self-correct and reliably use tools to help automate complex enterprise workflows ⬇️
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Inside the release: âś… 3B, 8B and 30B models with native thinking capabilities âś… Advanced coding and software engineering capabilities âś… Optimized speech models for high-throughput transcription workloads âś… Flexible deployment across cloud, on-premises and edge environments
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IBM Research retweeted
Quantum computing has long been a technology of enormous promise. Now, that promise is starting to meet the real world. This week’s @Newsweek cover explores why 2026 could mark an inflection point for quantum, from materials science to drug discovery. newsweek.com/nw-ai-technolog…
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Quantum computers run cold. Really cold. ❄️ @LiveScience takes a look inside IBM’s new modular cryogenic architecture, designed to connect quantum processors while keeping them at temperatures near absolute zero. 🧵 A few things worth knowing:
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The system reaches about 10 millikelvins, more than 180Ă— colder than deep space. But the bigger story is what happens when you connect these ultra-cold modules: quantum processors can be linked together to help scale toward fault-tolerant quantum computing.
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Read the full feature 👇 ibm.co/6017ERUhL
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IBM Research retweeted
Today, @IBM is announcing a new modular architecture for quantum cryogenic systems. This approach to housing, connecting, and cooling quantum processors is a foundational component of IBM’s path toward IBM Quantum Starling in 2029, which is expected to be the world’s first fault-tolerant quantum computer. Learn more here: ibm.co/6017ERo3h
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IBM Research retweeted
Quantum progress isn't just about qubits. ⚛️ To build fault-tolerant quantum computing, refrigeration hardware must evolve alongside processors. That's why we're introducing a new modular cryogenic architecture. Here are the details 🧵👇
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In "@SpiderMan: Brand New Day", Prof. Banner lectures on quantum chromodynamics (QCD), the study of how quarks and gluons form protons and neutrons. Fun Fact: Researchers from BasQ are using @IBM quantum computers to understand physical theories like QCD ibm.co/6014ER1QM
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America is leading the world in quantum computing. Secretary Lutnick visited IBM in Yorktown Heights, New York, to see that leadership firsthand. American innovation and the Commerce Department’s cutting-edge CHIPS deals are driving the industry forward.
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How do you trust a quantum result when classical verification is no longer possible? See how researchers from @UChicago, Qedma, and Algorithmiq demonstrated quantum advantage based on frameworks designed to build trust in quantum computation. 🧵👇
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Algorithmiq and IBM showed how to trust quantum results without classical benchmarks, finding consistent outcomes across five processors: ibm.co/6015EREHN
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Three independent research papers. Three demonstrations showing trusted quantum computation in regimes where classical methods fail. Read our full blog here: ibm.co/6016EREH4
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