We have developed a process to mass-produce quantum dot micropillar cavities using direct-write lithography. This technique allows us to achieve high volume patterning of high aspect ratio pillars with vertical, smooth sidewalls maintaining a high quality factor for diameters below 2.0 μm. Encapsulating the cavities in a thin layer of oxide (Ta2O5) prevents oxidation in the atmosphere, preserving the optical properties of the cavity over months of ambient exposure. We confirm that single dots in the cavities can be deterministically excited to create high purity indistinguishable single photons with interference visibility (96.2±0.7)%.
Cite
@article{arxiv.2304.00141,
title = {Direct-write projection lithography of quantum dot micropillar single photon sources},
author = {Petros Androvitsaneas and Rachel N. Clark and Matthew Jordan and Tomas Peach and Stuart Thomas and Saleem Shabbir and Angela D. Sobiesierski and Aristotelis Trapalis and Ian A. Farrer and Wolfgang W. Langbein and Anthony J. Bennett},
journal= {arXiv preprint arXiv:2304.00141},
year = {2024}
}