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Hybrid Quantum-Classical Algorithms and Quantum Error Mitigation

Journal of the Physical Society of Japan · 2021 · Vol. 90(3) · pp. 032001–032001
Suguru EndoZhenyu CaiSimon C. BenjaminXiao Yuan

Abstract

Quantum computers can exploit a Hilbert space whose dimension increases exponentially with the number of qubits. In experiment, quantum supremacy has recently been achieved by the Google team by using a noisy intermediate-scale quantum (NISQ) device with over 50 qubits. However, the question of what can be implemented on NISQ devices is still not fully explored, and discovering useful tasks for such devices is a topic of considerable interest. Hybrid quantum-classical algorithms are regarded as well-suited for execution on NISQ devices by combining quantum computers with classical computers, and are expected to be the first useful applications for quantum computing. Meanwhile, mitigation of errors on quantum processors is also crucial to obtain reliable results. In this article, we review the basic results for hybrid quantum-classical algorithms and quantum error mitigation techniques. Since quantum computing with NISQ devices is an actively developing field, we expect this review to be a useful basis for future studies.

Quantum Computing Algorithms and ArchitectureQuantum Information and CryptographyQuantum-Dot Cellular AutomataQuantum computerQuantum algorithmDimension (graph theory)QuantumExploitHilbert spaceQuantum error correctionQuantum phase estimation algorithm

Funding

  • Engineering and Physical Sciences Research Council
Citations
489
FWCI
47.73
field-weighted impact
References
130
Percentile
100%
vs. same field & year
Citations per year
References
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