Experimental system design for the integration of trapped-ion and superconducting qubit systems

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Date
2016
Volume
15
Issue
12
Journal
Quantum information processing
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Publisher
Dordrecht : Springer Science + Business Media B.V.
Abstract

We present a design for the experimental integration of ion trapping and superconducting qubit systems as a step towards the realization of a quantum hybrid system. The scheme addresses two key difficulties in realizing such a system: a combined microfabricated ion trap and superconducting qubit architecture, and the experimental infrastructure to facilitate both technologies. Developing upon work by Kielpinski et al. (Phys Rev Lett 108(13):130504, 2012. doi:10.1103/PhysRevLett.108.130504), we describe the design, simulation and fabrication process for a microfabricated ion trap capable of coupling an ion to a superconducting microwave LC circuit with a coupling strength in the tens of kHz. We also describe existing difficulties in combining the experimental infrastructure of an ion trapping set-up into a dilution refrigerator with superconducting qubits and present solutions that can be immediately implemented using current technology.

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Citation
De Motte, D., Grounds, A. R., Rehák, M., Rodriguez Blanco, A., Lekitsch, B., Giri, G. S., et al. (2016). Experimental system design for the integration of trapped-ion and superconducting qubit systems (Dordrecht : Springer Science + Business Media B.V.). Dordrecht : Springer Science + Business Media B.V. https://doi.org//10.1007/s11128-016-1368-y
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CC BY 4.0 Unported