English

Integration of $\text{Er}^{3+}$-emitters in silicon-on-insulator nanodisks metasurface

Optics 2025-11-04 v1 Materials Science

Abstract

Erbium (Er3+\text{Er}^{3+}) emitters are relevant for optical applications due to their narrow emission line directly in the telecom C-band due to the 4I13/2{}^\text{4}\text{I}_{\text{13/2}} \rightarrow 4I15/2{}^\text{4}\text{I}_{\text{15/2}} transition at 1.54 μ\mum. 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 Er3+\text{Er}^{3+} 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 Er3+\text{Er}^{3+} 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