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IBM - Announcements

IBM and NASA Release Open-Source AI Model to Support Lunar Exploration IBM, Lockheed Martin Announce Swiss Quantum Innovation Hub at ETH Zurich, Anchored by Switzerland’s First IBM Quantum Computer LTM Collaborates with IBM and Red Hat on Lightwell to Advance AI-Driven Open-Source Software Remediation Cleveland Clinic, RIKEN and IBM Team Advance to Finals for 2026 ACM Gordon Bell Prize New IBM Study Finds AI Adoption Is Outpacing K-12 Readiness IBM Brings AI-Powered US Open Fan Experience Back to Madison Square Park IBM Completes Acquisition of HRL Laboratories to Accelerate the Future of Quantum IBM Unveils Next Generation Dual-Architecture Processor for IBM Z and LinuxONE IBM and the USTA Introduce New AI-Powered Fan Experiences for 2026 US Open IBM Study: Sports Fans Want Streamlined Digital Experiences as Platform Choices Expand IBM Partners with OpenAI to Accelerate Secure AI Deployment for Enterprises Across Core Operations IBM and Together AI Sign Multi-Year Agreement to Scale Open-Source AI Inference with NVIDIA AI Infrastructure on IBM Cloud - Aug 11, 2026 IBM Introduces Apptio AI Value & ROI to Close the Gap Between AI Spend and Business Results IBM and Red Hat Offer Lightwell at No Cost to Universities, NGOs and Think Tanks IBM and Algorithmiq Demonstrate Quantum Advantage, Establishing a Framework for Trusted Quantum Computation Beyond Classical Verification IBM and Qedma Demonstrate Quantum Advantage, Modeling Physics Beyond Classical Capabilities Through Trusted Quantum Computation IBM and The University of Chicago Demonstrate Quantum Advantage, Establishing Trusted Quantum Computation on Logical Circuits IBM Study: One in Four Malicious Breaches are AI-Enabled, Costing Companies $6 Million on Average IBM to Acquire HRL Laboratories to Power the Future of Quantum IBM RELEASES SECOND-QUARTER RESULTS IBM Launches New Power Systems and Software Built for Enterprises to Address Risk, Productivity, and Flexibility Arvind Krishna IBM Advances Enterprise AI Software Development with Multi-Agent Capabilities and Specialized Modernization Workflows IBM to Announce Second-Quarter 2026 Financial Results IBM and Red Hat Expand Lightwell with New Offerings to Build the Trust Infrastructure for AI-Era Open Source IBM Launches Compact z17 and LinuxONE Systems to Address Data Center Space and Cost Constraints Oak Ridge National Lab, Cleveland Clinic, and IBM Achieve First-Known Computations of Fusion Materials on a Quantum Computer IBM, Red Hat, and Deloitte Announce Lightwell Collaboration to Help Strengthen Open Source Software Supply Chain Trust IBM Debuts World’s First Sub-1 Nanometer Chip Technology IBM, Red Hat and Palo Alto Networks Expand Project Lightwell to Help Organizations Respond to Software Vulnerabilities
IBM Connects Its First Modular Cryogenic Systems in Miles...
2026-08-19 · via IBM - Announcements

• New cryogenic quantum fridges designed to link hundreds of quantum chips.

• Cooled to below 15 millikelvin, more than 180 times colder than deep space, the build out marks a step forward in the engineering required for future quantum computers.

• Advances IBM’s quantum roadmap to deliver the world’s first fault-tolerant quantum computer in 2029.

Aug 19, 2026

YORKTOWN HEIGHTS, N.Y., August 19, 2026 — IBM (NYSE: IBM) today announced it has successfully joined and cooled down two cryogenic modules into a single environment. The new architecture is designed to scale into the modular, shared, and ultra-cold system required to link hundreds of quantum chips into a more powerful quantum computer capable of solving large problems. Its deployment is a milestone on IBM's path to delivering IBM Quantum Starling in 2029, which is expected to be the world's first fault-tolerant quantum computer and will integrate advances across error correction, processor design, decoding, and systems engineering.

Combined, the first two operational modules stand more than 8 feet tall and 8 feet wide, and initial tests demonstrated they can jointly cool down to 4 Kelvin (the temperature of liquid helium) in under 5 days, reaching a final temperature of below 15 millikelvin shortly after. Each module’s vacuum enclosure offers up to 12 times more wiring space than the most widely used IBM quantum systems, enabling more chip-to-chip connections both within and between modules.

IBM’s new box-shaped design allows modules to connect in a tight row and use this larger space to directly link quantum processors with IBM’s “L-coupler” technology. L-couplers connect separate quantum chips together to share information, communicate, and operate as part of a larger quantum computer.

By 2027, IBM’s quantum roadmap plans to use L-couplers to link multiple processors into a larger quantum computer with at least 1,000 programmable qubits, which are qubits that can be directly used to perform computations. Towards this goal, IBM will install IBM Quantum Nighthawk processors into the cryogenic modules later this year to expand operational performance testing. At the time Starling is delivered, IBM plans for each cryogenic module to house thousands of qubits.

IBM’s plans for Starling were introduced last year with a new error correction code that dramatically reduces the physical resources required for fault tolerance. Since then, the company’s progression has remained on course, including the demonstration of core hardware components and breakthroughs in efficient error-correction decoding.

"Bringing fault-tolerant quantum computers to industries depends on several fundamental advances,” said Jay Gambetta, Director of IBM Research and IBM Fellow. “The successful connection and operation of these cryogenic modules signals a leap forward in that direction and will accelerate our progress alongside continued innovation in quantum hardware, software, and algorithms.”

IBM expects its scalable cryogenic modules to help speed its pace of innovation. For example, three essential components of IBM Quantum System Two’s environment are built into the new architecture, but now in a way that allows each part to be independently tested, improved, and rapidly iterated.

The delivery of these new cryogenic quantum modules is further evidence that IBM is systematically delivering against its quantum roadmap, solving another one of the major hurdles required to accelerate its path to fault-tolerant quantum computing.

About IBM

IBM is a leading provider of global hybrid cloud and AI, and consulting expertise. We help clients in more than 175 countries capitalize on insights from their data, streamline business processes, reduce costs and gain the competitive edge in their industries. Thousands of governments and corporate entities in critical infrastructure areas such as financial services, telecommunications and healthcare rely on IBM's hybrid cloud platform and Red Hat OpenShift to affect their digital transformations quickly, efficiently and securely. IBM's breakthrough innovations in AI, quantum computing, industry-specific cloud solutions and consulting deliver open and flexible options to our clients. All of this is backed by IBM's long-standing commitment to trust, transparency, responsibility, inclusivity and service. Visit www.ibm.com for more information.

Erin Angelini
IBM
edlehr@us.ibm.com
 

  • Download IBM’s scalable and modular cryogenic system to support fault-tolerant quantum computing. (Credit: IBM)

    IBM’s scalable and modular cryogenic system to support fault-tolerant quantum computing. (Credit: IBM)

  • Download IBM’s scalable and modular cryogenic system to support fault-tolerant quantum computing. (Credit: IBM)

    IBM’s scalable and modular cryogenic system to support fault-tolerant quantum computing. (Credit: IBM)

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