Progress in fault-tolerant compilation and execution of quantum algorithms
ORAL
Abstract
Quantum algorithms have the potential to outperform their classical counterparts in a large variety of computing tasks. At the same time, quantum error correction and fault tolerance is expected to be required to achieve a practical quantum computing advantage. We report progress in fault-tolerant compilation and execution of quantum algorithms on trapped-ion quantum processor. We showcase the unique techniques and considerations required to execute and benchmark algorithmic primitives in a fault-tolerant setting, and at a scale (50+ physical qubits) beyond the reach of many standard benchmarking techniques. Our work makes an important step towards the implementation, execution, and benchmarking of large-scale fault-tolerant quantum algorithms.
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Presenters
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Michael A Perlin
JPMorganChase
Authors
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Michael A Perlin
JPMorganChase
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Zichang He
JPMorganChase
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Anthony A Armenakas
JPMorganChase
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Dylan A Herman
JPMorganChase, JPMorgan Chase & Co.
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David Amaro
Quantinuum
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Ciaran Ryan-Anderson
Quantinuum
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Sivaprasad T Omanakuttan
JPMorganChase
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Pablo Andres-Martinez
Quantinuum
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Silas Dilkes
Quantinuum
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Ruslan Shaydulin
JPMorganChase
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Marco Pistoia
JPMorganChase, JP Morgan Chase