Three different elements, Silicon, Selenium, and Tellurium, are ion-implanted in Gallium arsenide to form a conducting layer that serves as a back-gate to a molecular beam epitaxy (MBE) overgrown two-dimensional electron gas (2DEG). While the heavy ion Tellurium creates too many damages in the gallium arsenide to form a conducting layer, both Silicon and Selenium show promising results combined with MBE-grown high-quality 2DEGs. Similar 2DEG mobility compared to non-implanted reference samples is achieved for both Silicon and Selenium implanted structures. Individual contacts to the back-gate are challenging. However, Silicon implanted structures, annealed before the MBE growth, result in a function back-gate, and the electron density of the 2DEG is tuned via the back-gate.
@article{arxiv.2103.14543,
title = {Donor implanted Back-gates in GaAs for MBE-grown highest mobility two-dimensional electron systems},
author = {Jan Scharnetzky and Philipp Baumann and Christian Reichl and Helmut Karl and Werner Dietsche and Werner Wegscheider},
journal= {arXiv preprint arXiv:2103.14543},
year = {2021}
}