Coherent Josephson Qubit Suitable for Scalable Quantum Integrated Circuits
作者:R. Barends, J. Kelly, A. Megrant, D. Sank, Evan R. Jeffrey, Y. Chen, Yi Yin, B. Chiaro, Joshua Y. Mutus, C. Neill, P. J. J. O’Malley, P. Roushan, J. Wenner, T. White, Andrew N. Cleland, John M. Martinis · 发表于:Physical Review Letters · 年份:2013 · DOI:10.1103/physrevlett.111.080502 · 被引用次数:802 · 研究领域:Quantum Information and Cryptography、Quantum and electron transport phenomena、Quantum Computing Algorithms and Architecture
We demonstrate a planar, tunable superconducting qubit with energy relaxation times up to 44 μs. This is achieved by using a geometry designed to both minimize radiative loss and reduce coupling to materials-related defects. At these levels of coherence, we find a fine structure in the qubit energy lifetime as a function of frequency, indicating the presence of a sparse population of incoherent, weakly coupled two-level defects. We elucidate this defect physics by experimentally varying the geometry and by a model analysis. Our "Xmon" qubit combines facile fabrication, straightforward connectivity, fast control, and long coherence, opening a viable route to constructing a chip-based quantum computer.