arXiv · cond-mat/0312623
An RF-Driven Josephson Bifurcation Amplifier for Quantum Measurements
Abstract
We have constructed a new type of amplifier whose primary purpose is the readout of superconducting quantum bits. It is based on the transition of an RF-driven Josephson junction between two distinct oscillation states near a dynamical bifurcation point. The main advantages of this new amplifier are speed, high-sensitivity, low back-action, and the absence of on-chip dissipation. Pulsed microwave reflection measurements on nanofabricated Al junctions show that actual devices attain the performance predicted by theory.
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I. Siddiqi, R. Vijay, F. Pierre, C. M. Wilson, M. Metcalfe, C. Rigetti, L. Frunzio, M. H. Devoret. 2003-12-24. An RF-Driven Josephson Bifurcation Amplifier for Quantum Measurements. https://doi.org/10.1103/physrevlett.93.207002
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