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IBM - Announcements

Anderon, an IBM Company, Finalizes Agreement with the U.S. Department of Commerce for a $1 Billion CHIPS Award to Accelerate R&D for U.S.-Based Pure-Play Quantum Foundry 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 Connects Its First Modular Cryogenic Systems in Milestone Toward Fault-Tolerant Quantum Computing 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 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 and The University of Chicago Demonstrate Quantum Adv...
2026-07-30 · via IBM - Announcements

Scientists used a new error correction method to encode 70 logical qubits and crack a classically intractable problem.

The quantum computation finished in approximately 15 minutes — a task that would demand infeasible amounts of time with leading classical computing methods.

Jul 30, 2026

YORKTOWN HEIGHTS, N.Y. and CHICAGO – July 30, 2026 – IBM (NYSE: IBM) and researchers from the University of Chicago today announced a demonstration in quantum computing that achieves the fundamental criteria for quantum advantage: performing computations beyond the reach of leading classical simulation methods while providing trust that the computation returned accurate results.

In their new paper, “Sampling hard circuits with verifiably high fidelity,” the researchers showed that these two goals could be simultaneously achieved by a novel construction of encoded quantum circuits, enabling one of the largest demonstrations of logical quantum computing to date. These circuits and their results are also now openly released on the Quantum Advantage Tracker.

Building Trust into Quantum Results

For years, researchers have used a benchmark known as random circuit sampling (RCS) to test whether quantum computers could outperform classical systems. In simple terms, RCS asks a quantum computer to generate patterns so complex that a classical computer cannot efficiently reproduce them. The challenge has been verification: as the problem becomes harder, it becomes increasingly difficult and then infeasible to prove the quantum computer’s answer is correct, without making strong assumptions about the inner workings of the quantum computer.

In their experiment, researchers from IBM and the University of Chicago have addressed this obstacle with a structured alternative to RCS. The team was able to prove that this alternative retains the same hardness criteria as RCS, but crucially the new structure can be used to detect errors during the computation.

“Verification remains one of the biggest challenges in firmly establishing experimental quantum advantage,” said Bill Fefferman, Associate Professor at the University of Chicago. “This experiment develops techniques to better characterize the fidelity of hard quantum states under noise, increasing confidence that the quantum computer is solving a computationally hard problem.”

Soumik Ghosh, PhD student in Fefferman’s group at the University of Chicago, added, “Beyond strengthening experimental validation, advances in verification have the potential to unlock practical applications for the next generation of quantum computers.”

In one of the world’s largest-known error correction demonstrations, the team executed 70 logical qubits — shielding them from errors to run 2,415 logical two-qubit operations and 468 logical “T gates,” both metrics that quantify the complexity of a quantum circuit. Because the circuit was encoded, the logical computation was able to achieve effective logical error rates that were 10 times lower than the physical error rates, enabling the remarkably high circuit fidelity even at the large gate counts.

“We are now firmly in the quantum advantage era,” said Jay Gambetta, Director of IBM Research and IBM Fellow. “We have demonstrated a quantum computation beyond the practical reach of classical computers that establishes, with statistical confidence, a lower bound on how faithfully it was executed. This milestone gives scientists, developers, and businesses a new foundation for trusting quantum computers as they scale to problems far beyond what we can achieve classically.”

The team showed many leading classical simulation approaches faced prohibitive runtimes — while the IBM quantum computer took approximately 15 minutes to accomplish the task.

Error correction, and trust in the computation’s output, are essential milestones towards scaling quantum computing — and this work marks a significant step on the path forward.

More Demonstrations of Quantum Advantage Emerge

Today, alongside this milestone from IBM and the University of Chicago, partners from across IBM’s ecosystem are announcing more demonstrations of quantum advantage with trusted computations. To learn more, visit https://www.ibm.com/quantum/blog/quantum-advantage.

About the University of Chicago

The University of Chicago is a leading academic and research institution that has driven new ways of thinking since its founding in 1890. As an intellectual destination, the University draws scholars and students from around the world to its campuses and centers around the globe. The University provides a distinctive educational experience and research environment, empowering individuals to challenge conventional thinking and pursue field-defining research that produces new understanding and breakthroughs with global impact.

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.


Media contacts:

Brittany Forgione
IBM
Brittany.Forgione@ibm.com

Erin Angelini
IBM 
edlehr@us.ibm.com