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Download fileMølmer-Sørensen entangling gate for cavity QED systems
journal contribution
posted on 2023-06-09, 20:00 authored by Hiroki TakahashiHiroki Takahashi, Pedro Nevado, Matthias KellerMatthias KellerThe Mølmer–Sørensen gate is a state-of-the-art entangling gate in ion trap quantum computing where the gate fidelity can exceed 99%. Here we propose an analogous implementation in the setting of cavity QED. The cavity photon mode acts as the bosonic degree of freedom in the gate in contrast to that played by the phonon mode in ion traps. This is made possible by utilising cavity assisted Raman transitions interconnecting the logical qubit states embedded in a four-level energy structure, making the 'anti-Jaynes–Cummings' term available under the rotating-wave approximation. We identify practical sources of infidelity and discuss their effects on the gate performance. Our proposal not only demonstrates an alternative entangling gate scheme but also sheds new light on the relationship between ion traps and cavity QED, in the sense that many techniques developed in the former are transferable to the latter through our framework.
History
Publication status
- Published
File Version
- Accepted version
Journal
Journal of Physics B: Atomic, Molecular and Optical PhysicsISSN
0953-4075Publisher
Institute of PhysicsExternal DOI
Volume
50Article number
a195501Department affiliated with
- Physics and Astronomy Publications
Full text available
- Yes
Peer reviewed?
- Yes