A microfabricated ion trap with integrated microwave circuitry
Publication
, Journal Article
Allcock, DTC; Harty, TP; Ballance, CJ; Keitch, BC; Linke, NM; Stacey, DN; Lucas, DM
Published in: Applied Physics Letters
January 28, 2013
We describe the design, fabrication, and testing of a surface-electrode ion trap, which incorporates microwave waveguides, resonators, and coupling elements for the manipulation of trapped ion qubits using near-field microwaves. The trap is optimised to give a large microwave field gradient to allow state-dependent manipulation of the ions' motional degrees of freedom, the key to multi-qubit entanglement. The microwave field near the centre of the trap is characterised by driving hyperfine transitions in a single laser-cooled 43Ca+ ion. © 2013 American Institute of Physics.
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Published In
Applied Physics Letters
DOI
ISSN
0003-6951
Publication Date
January 28, 2013
Volume
102
Issue
4
Related Subject Headings
- Applied Physics
- 51 Physical sciences
- 40 Engineering
- 10 Technology
- 09 Engineering
- 02 Physical Sciences
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Allcock, D. T. C., Harty, T. P., Ballance, C. J., Keitch, B. C., Linke, N. M., Stacey, D. N., & Lucas, D. M. (2013). A microfabricated ion trap with integrated microwave circuitry. Applied Physics Letters, 102(4). https://doi.org/10.1063/1.4774299
Allcock, D. T. C., T. P. Harty, C. J. Ballance, B. C. Keitch, N. M. Linke, D. N. Stacey, and D. M. Lucas. “A microfabricated ion trap with integrated microwave circuitry.” Applied Physics Letters 102, no. 4 (January 28, 2013). https://doi.org/10.1063/1.4774299.
Allcock DTC, Harty TP, Ballance CJ, Keitch BC, Linke NM, Stacey DN, et al. A microfabricated ion trap with integrated microwave circuitry. Applied Physics Letters. 2013 Jan 28;102(4).
Allcock, D. T. C., et al. “A microfabricated ion trap with integrated microwave circuitry.” Applied Physics Letters, vol. 102, no. 4, Jan. 2013. Scopus, doi:10.1063/1.4774299.
Allcock DTC, Harty TP, Ballance CJ, Keitch BC, Linke NM, Stacey DN, Lucas DM. A microfabricated ion trap with integrated microwave circuitry. Applied Physics Letters. 2013 Jan 28;102(4).
Published In
Applied Physics Letters
DOI
ISSN
0003-6951
Publication Date
January 28, 2013
Volume
102
Issue
4
Related Subject Headings
- Applied Physics
- 51 Physical sciences
- 40 Engineering
- 10 Technology
- 09 Engineering
- 02 Physical Sciences