Electrostatically defined silicon quantum dots with counted antimony donor implants

Meenakshi Singh, Jose L Pacheco, Daniel Perry, Elias Garratt, G. Ten Eyck, N. C. Bishop, J. R. Wendt, Ronald P. Manginell, J. Domínguez, Tammy Pluym,

Applied Physics Letters · 2016 · 23 citations · 22 references

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Abstract

Deterministic control over the location and number of donors is crucial to donor spin quantum bits (qubits) in semiconductor based quantum computing. In this work, a focused ion beam is used to implant antimony donors in 100 nm × 150 nm windows straddling quantum dots. Ion detectors are integrated next to the quantum dots to sense the implants. The numbers of donors implanted can be counted to a precision of a single ion. In low-temperature transport measurements, regular Coulomb blockade is observed from the quantum dots. Charge offsets indicative of donor ionization are also observed in devices with counted donor implants.

References

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