Integration of $\text{Er}^{3+}$-emitters in silicon-on-insulator nanodisks metasurface
Abstract
Erbium () emitters are relevant for optical applications due to their narrow emission line directly in the telecom C-band due to the transition at 1.54 m. Additionally they are promising candidates for future quantum technologies when embedded in thin-film silicon-on-insulator (SOI) to achieve fabrication scalability and CMOS compatibility. In this paper we integrate emitters in SOI metasurfaces made of closely spaced array of nanodisks, to study their spontaneous emission via room and cryogenic temperature confocal microscopy, off-resonance and in-resonance photoluminescence excitation at room temperature and time resolved spectroscopy. This work demonstrates the possibility to adopt CMOS-compatible and fabrication scalable metasurfaces for controlling and improving the collection efficiency of the spontaneous emission from the transition in SOI and could be adopted in similar technologically advanced materials.
Keywords
Cite
@article{arxiv.2509.11592,
title = {Integration of $\text{Er}^{3+}$-emitters in silicon-on-insulator nanodisks metasurface},
author = {Joshua Bader and Hamed Arianfard and Vincenzo Ciavolino and Shin-ichiro Sato and Stefania Castelletto},
journal= {arXiv preprint arXiv:2509.11592},
year = {2025}
}
Comments
10 pages, 5 figures