IBM quantum computer solves classically intractable problem in 15 minutes

IBM and University of Chicago researchers demonstrated a quantum computing breakthrough by solving a classically intractable problem in 15 minutes. The team utilized a new error correction strategy to encode 70 logical qubits, proving the practical utility of quantum systems.
Why it matters
This experiment marks a significant milestone in 'quantum advantage,' showing that quantum computers can perform complex calculations that are impossible for traditional supercomputers.
Scientists used a new error correction strategy to encode 70 logical qubits and tackle a problem considered classically intractable.
The quantum computation was completed in about 15 minutes, while leading classical computing methods would require an impractical amount of time to perform the same task.
IBM and researchers at the University of Chicago have announced a quantum computing demonstration that meets key criteria for quantum advantage. The experiment performed a calculation beyond the practical reach of leading classical simulation techniques while also providing evidence that the quantum computer produced a reliable result.
In a new paper, "Sampling hard circuits with verifiably high fidelity," the researchers describe how they achieved both goals using a newly designed form of encoded quantum circuit. The work represents one of the largest demonstrations of logical quantum computing reported so far.
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