量子位元
物理
量子退相干
掉期(金融)
量子力学
参数统计
拓扑(电路)
量子
数学
组合数学
财务
经济
统计
作者
Yinqi Chen,Konstantin Nesterov,Hugh Churchill,Javad Shabani,Vladimir Manucharyan,Maxim Vavilov
标识
DOI:10.1103/physrevapplied.20.044012
摘要
We describe the generation of entangling gates on superconductor-semiconductor hybrid qubits by ac voltage modulation of the Josephson energy. Our numerical simulations demonstrate that the unitary error can be below 10(-5) in a variety of 75-ns-long two-qubit gates (CZ, iSWAP, and root iSWAP) implemented using parametric resonance. We analyze the conditional ZZ phase and demonstrate that the CZ gate needs no further phase-correction steps, while the ZZ phase error in SWAP-type gates can be compensated by choosing pulse parameters. With decoherence considered, we estimate that qubit relaxation time needs to exceed 70 mu s to achieve the 99.9% fidelity threshold.
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