IBM and Algorithmiq Demonstrate Quantum Advantage, Establishing a Framework for Trusted Quantum Computation Beyond Classical Verification
A quantum simulation of heterogeneous matter, designed by Algorithmiq and executed on IBM quantum computers, continues to compete with the world's leading classical simulation methods eight months after its debut on the Quantum Advantage Tracker.
The work addresses one of quantum computing's central challenges: how to trust a result when no classical computer can verify it.
Algorithmiq is also releasing a new benchmark for quantum advantage claims, making its best classical method for simulating molecular ground states available to the research community.
Eight months after this problem and results were first released through the launch of the Quantum Advantage Tracker, no classical method has been able to reliably produce results across the full problem regime studied in this work. It demonstrates that quantum computers can provide trusted solutions more efficiently, more cheaply, or more accurately than leading classical compute methods — which has long been considered a key milestone in the field.
Studying Information Flow in Heterogenous Quantum Matter
Real materials, including catalysts and battery electrolytes, are defined not by perfect crystalline order but by irregular structures, interfaces, and local variations that strongly influence how information, energy, and particles move through the system. To study these effects, a team led by senior scientist Sergey Filippov in Algorithmiq's R&D division, which is headed by co-founder & Chief Scientific Officer
The model, when executed on an IBM Quantum Heron processor, effectively captured a programmable quantum material whose microscopic couplings could be tuned and reconfigured at will, so that researchers can control where information flows, localizes, or interferes, as it would in a real material.
Solving Quantum Computing's Trust Problem
Quantum results have traditionally earned trust the same way: by checking them against a classical simulation. To do so, Algorithmiq's software engineering team collaborated with world-leading classical simulation researchers to explore different simulation approaches. The various classical methods produced conflicting predictions among themselves for the same quantities. In the absence of an exact solution, the challenge was not only to outperform classical computation, but also to determine which result could be trusted.
To address this challenge, the team developed a new framework for trusted quantum computation in the beyond-classical era, laying down a blueprint for scientific discovery. A central part of this strategy was noise manipulation and building a representative model of the underlying noise in the device. Researchers deliberately changed the noise affecting the quantum circuits, including through controlled noise injection, modified gate calibrations, and execution on multiple IBM Quantum processors. This showed that the quantum results remained stable — providing evidence that the quantum computers were producing consistent solutions. With extensively tested noise models, they also demonstrated a path to stand-alone validation using unbiased error mitigation techniques with quantified uncertainty.
Open Sourcing the Benchmark
Algorithmiq is also today releasing monoprop, which makes its best classical method for simulating molecular ground states available to the wider research community — the same techniques it has used to test and challenge quantum advantage claims, including its own. The package is designed to let any research group, quantum or classical, stress-test future advantage claims rather than take them on faith.
Supporting Commentary
More Demonstrations of Quantum Advantage Emerge
Today, alongside this milestone from IBM and Algorithmiq, 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 Algorithmiq
Algorithmiq programs quantum computers to solve the world's hardest problems. From medicine to materials, from AI to complex industrial challenges, the company develops the software that makes quantum computers useful for enterprises, today. Headquartered in
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 a 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.
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IBM
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IBM
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SOURCE IBM
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