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Göran Wendin

Researcher at Chalmers University of Technology

Publications -  184
Citations -  5995

Göran Wendin is an academic researcher from Chalmers University of Technology. The author has contributed to research in topics: Josephson effect & Qubit. The author has an hindex of 36, co-authored 177 publications receiving 5389 citations. Previous affiliations of Göran Wendin include Uppsala University & Georgia Institute of Technology.

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Quantum information processing with superconducting circuits: a review

TL;DR: The time is ripe for describing some of the recent development of superconducting devices, systems and applications as well as practical applications of QIP, such as computation and simulation in Physics and Chemistry.
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Quantum information processing and communication: strategic report on current status, visions and goals for research in Europe

Peter Zoller, +52 more
TL;DR: In this paper, the authors present an excerpt of the document "Quantum Information Processing and Communication: Strategic report on current status, visions and goals for research in Europe", which has been recently published in electronic form at the website of FET (the Future and Emerging Technologies Unit of the Directorate General Information Society of the European Commission).
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Quantum bits with Josephson junctions (Review Article)

TL;DR: In this paper, basic Josephson circuits for qubit applications, methods of quantum description of these circuits, and circuit solutions for qu bit couplings are reviewed and illustrated with recent experiments using various qubit types.
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Andreev bound states in high-Tc superconducting junctions

TL;DR: In this article, the formation of bound states at surfaces of materials with an energy gap in the bulk electron spectrum is a well known physical phenomenon, and it is shown that these surface states may hybridize and form bound Andreev states, trapped between the superconducting electrodes.
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Electron shake-up and correlation satellites and continuum shake-off distributions in X-Ray photoelectron spectra of the rare gas atoms

TL;DR: In this paper, the relativistic MCSCF energies for a large number of excited states in the rare gases H, He, Ne, Ar, Kr and Xe have been studied in the gas phase at low pressure.