Review

Quantum information processing with superconducting circuits: a review

Published 1 September 2017 © 2017 IOP Publishing Ltd. All rights, including for text and data mining, AI training, and similar technologies, are reserved.
, , Citation G Wendin 2017 Rep. Prog. Phys. 80 106001DOI 10.1088/1361-6633/aa7e1a

0034-4885/80/10/106001

Abstract

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.

Export citation and abstractBibTeXRIS

The computer you are using is not registered by an institution with a subscription to this article. Please choose one of the options below.

Purchase from

Article Galaxy
CCC RightFind

Purchase this article from our trusted document delivery partners.

Make a recommendation

To gain access to this content, please complete the Recommendation Form and we will follow up with your librarian or Institution on your behalf.

For corporate researchers we can also follow up directly with your R&D manager, or the information management contact at your company. Institutional subscribers have access to the current volume, plus a 10-year back file (where available).

Please wait… references are loading.
10.1088/1361-6633/aa7e1a