Quantum information processing with superconducting circuits: a review

Квантовая обработка информации с использованием сверхпроводящих схем: обзор
G Wendin
2017-07-06

quantum information processingquantum simulationquantum supremacysuperconducting circuitssuperconducting qubits
During the last ten years, superconducting circuits have passed from being interesting physical devices to becoming contenders for near-future useful and scalable quantum information processing (QIP). Advanced quantum simulation experiments have been shown with up to nine qubits, while a demonstration of quantum supremacy with fifty qubits is anticipated in just a few years. Quantum supremacy means that the quantum system can no longer be simulated by the most powerful classical supercomputers. Integrated classical-quantum computing systems are already emerging that can be used for software development and experimentation, even via web interfaces. Therefore, the time is ripe for describing some of the recent development of superconducting devices, systems and applications. As such, the discussion of superconducting qubits and circuits is limited to devices that are proven useful for current or near future applications. Consequently, the centre of interest is the practical applications of QIP, such as computation and simulation in Physics and Chemistry.
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Integrated classical–quantum computing systems are already available for software development and experimentation, including through web interfaces.
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Quantum simulation experiments using superconducting circuits have reached systems of up to nine qubits.
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Superconducting circuits have progressed from research devices to contenders for useful and scalable near-term quantum information processing.
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The abstract anticipates quantum supremacy demonstrations with approximately fifty qubits within a few years.
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The review focuses on superconducting qubits and circuits with demonstrated or near-term practical applications, especially computation and simulation in physics and chemistry.

superconducting circuits and qubits for quantum information processing

their practical capabilities and applications for scalable quantum computation and simulation in physics and chemistry

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2017-07-06
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G Wendin
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