Demonstration of quantum computation and error correction with a tesseract code
A critical milestone for quantum computers is to demonstrate fault-tolerant computation that outperforms computation on physical qubits. The tesseract subsystem color code protects four logical qubits in 16 physical qubits, to distance four. Using the tesseract code on Quantinuum's trapped-ion...
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Zusammenfassung: | A critical milestone for quantum computers is to demonstrate fault-tolerant
computation that outperforms computation on physical qubits. The tesseract
subsystem color code protects four logical qubits in 16 physical qubits, to
distance four. Using the tesseract code on Quantinuum's trapped-ion quantum
computers, we prepare high-fidelity encoded graph states on up to 12 logical
qubits, beneficially combining for the first time fault-tolerant error
correction and computation. We also protect encoded states through up to five
rounds of error correction. Using performant quantum software and hardware
together allows moderate-depth logical quantum circuits to have an order of
magnitude less error than the equivalent unencoded circuits. |
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DOI: | 10.48550/arxiv.2409.04628 |