Quantum Computing in the NISQ era and beyond

Квантовые вычисления в эпоху NISQ и за ее пределами
John Preskill
2018-08-06

Noisy Intermediate-Scale Quantum (NISQ)fault-tolerant quantum computingmany-body quantum physicsquantum computingquantum gates
Noisy Intermediate-Scale Quantum (NISQ) technology will be available in the near future. Quantum computers with 50-100 qubits may be able to perform tasks which surpass the capabilities of today's classical digital computers, but noise in quantum gates will limit the size of quantum circuits that can be executed reliably. NISQ devices will be useful tools for exploring many-body quantum physics, and may have other useful applications, but the 100-qubit quantum computer will not change the world right away - we should regard it as a significant step toward the more powerful quantum technologies of the future. Quantum technologists should continue to strive for more accurate quantum gates and, eventually, fully fault-tolerant quantum computing.
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A 100-qubit quantum computer is unlikely to transform society immediately; it should instead be viewed as a major milestone toward more powerful quantum technologies.
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NISQ devices are expected to be valuable for exploring many-body quantum physics and may support additional practical applications.
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NISQ quantum computers with approximately 50–100 qubits may perform tasks beyond the capabilities of contemporary classical digital computers.
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Noise in quantum gates will constrain the size of quantum circuits that NISQ devices can execute reliably.
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Progress beyond NISQ requires continued improvements in quantum-gate accuracy and, ultimately, fully fault-tolerant quantum computing.

Noisy Intermediate-Scale Quantum (NISQ) devices / quantum computers with ~50–100 qubits

Their computational capabilities, limitations from quantum-gate noise, applications to many-body quantum physics, and progression toward accurate gates and fault-tolerant quantum computing

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2018-08-06
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John Preskill
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