DOE OSTI · 1798144
A fitting algorithm for optimizing ion implantation energies and fluences
Abstract
In this work we describe a method to automatically generate an ion implantation recipe, a set of energies and fluences, to produce a desired defect density profile in a solid using the fewest required energies. We simulate defect density profiles for a range of ion energies, fit them with an appropriate function, and interpolate to yield defect density profiles at arbitrary ion energies. Given Ν energies, we then optimize a set of Ν energy-fluence pairs to match a given target defect density profile. Finally, we find the minimum Ν such that the error between the target defect density profile and the defect density profile generated by the Ν energy-fluence pairs is less than a given threshold. Inspired by quantum sensing applications with nitrogen-vacancy centers in diamond, we apply our technique to calculate optimal ion implantation recipes to create uniform-density 1 μm surface layers of 15 N or vacancies (using 4 He).
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Kehayias, Pauli Mark, Henshaw, Jacob Daniel, Saleh Ziabari, Maziar, Titze, Michael Dominik, Bielejec, Edward S., Lilly, Michael P., Mounce, Andrew M.. 2021-05-27. A fitting algorithm for optimizing ion implantation energies and fluences. https://doi.org/10.1016/j.nimb.2021.05.014
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