5 Papers
C.-E. Wu is an academic researcher from University of California, Berkeley. The author has contributed to research in topics: Flux qubit & Qubit. The author has an hindex of 4, co-authored 4 publications.
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Papers
Erratum: High-spin states in Gd152 [Phys. Rev. C 72 , 024317 (2005)]
S. T. Wang,Hui Hua,Jie Meng,Z. H. Li,S. Q. Zhang,F. R. Xu,H. L. Liu,Y. L. Ye,D. X. Jiang,Tao Zheng,Q. J. Wang,Z. Q. Chen,C.-E. Wu,G. L. Zhang,Dan-Yang Pang,J. Wang,Jian-Ling Lou,Bixiang Guo,G. Jin,S. G. Zhou,L. H. Zhu,Xin Wu,G. S. Li,S. X. Wen,C. Y. He,X. Z. Cui,Yi Liu +26 more
TL;DR: In this article , the authors proposed a method to estimate the probability of a single photon in the presence of an infinite number of photons, and demonstrated that it is possible to compute the probability.
Entangling flux qubits with a bipolar dynamic inductance
Britton Plourde,Jun Zhang,K. B. Whaley,Frank K. Wilhelm,Timothy Robertson,T. Hime,Sven Linzen,P. A. Reichardt,C.-E. Wu,John Clarke +9 more
TL;DR: In this article, a scheme to implement controllable coupling between two flux qubits using the screening current response of a dc superconducting quantum interference device (SQUID) was proposed.
Flux qubits and readout device with two independent flux lines
TL;DR: In this article, two superconducting flux qubits coupled to a readout quantum interference device (SQUID) were measured and two on-chip flux bias lines allowed independent flux control of any two of the three elements, illustrated by a two-dimensional qubit flux map.
Quantum theory of three-junction flux qubit with non-negligible loop inductance: Towards scalability
TL;DR: The three-junction flux qubit (quantum bit) as discussed by the authors consists of three Josephson junctions connected in series on a superconducting loop, and the three-dimensional potential in terms of the macroscopic degrees of freedom, and include the possible effects of asymmetry among the junctions and of stray capacitance associated with them.
Solid-state qubits with current-controlled coupling.
T. Hime,P. A. Reichardt,Britton Plourde,Britton Plourde,Timothy Robertson,C.-E. Wu,Alexey V. Ustinov,John Clarke +7 more
TL;DR: Control of the coupling between quantum bits on and off is demonstrated with two flux qubits coupled together through their mutual inductances and through the dc superconducting quantum interference device that reads out their magnetic flux states.