Simultaneous Implementation of NiSWAP and NSWAP Gates Using N + 1 Qubits in a Cavity or Coupled to a Circuit
- 作者: Said T.1, Chouikh A.1, Bennai M.1,2
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隶属关系:
- Laboratoire de Physique de la Matiére Condensée, Equipe Physique Quantique et Applications, Faculté des Sciences Ben M’sik
- LPHE-Modelisation et Simulation, Faculté des Sciences Rabat
- 期: 卷 126, 编号 5 (2018)
- 页面: 573-578
- 栏目: Atoms, Molecules, Optics
- URL: https://journals.rcsi.science/1063-7761/article/view/193070
- DOI: https://doi.org/10.1134/S106377611804012X
- ID: 193070
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详细
We propose an effective method to realize NiSWAP and NSWAP gates in a cavity or coupled to a circuit driven by a strong microwave field. The scheme is insensitive to the initial state of the resonator mode, and the operation time is independent of the number of qubits involved in the gates operations. These logic gates can be realized in a time much shorter than the radiative time and the lifetime of the cavity photon, and can be realized in a time (nanosecond-scale) much smaller than the decoherence time and the dephasing time (microsecond-scale) in circuit QED. Numerical simulation under the influence of the gates operations shows that the scheme can be implemented with high fidelity. We also propose a detailed procedure and experimentally analyze its feasibility. Moreover, the scheme might be experimentally achieved efficiently within current state-of-the-art technology.
作者简介
T. Said
Laboratoire de Physique de la Matiére Condensée, Equipe Physique Quantique et Applications, Faculté des Sciences Ben M’sik
Email: mdbennai@yahoo.fr
摩洛哥, Casablanca
A. Chouikh
Laboratoire de Physique de la Matiére Condensée, Equipe Physique Quantique et Applications, Faculté des Sciences Ben M’sik
Email: mdbennai@yahoo.fr
摩洛哥, Casablanca
M. Bennai
Laboratoire de Physique de la Matiére Condensée, Equipe Physique Quantique et Applications, Faculté des Sciences Ben M’sik; LPHE-Modelisation et Simulation, Faculté des Sciences Rabat
编辑信件的主要联系方式.
Email: mdbennai@yahoo.fr
摩洛哥, Casablanca; Rabat
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