English

Amorphous-silicon visible-light detector integrated in silicon nitride waveguides

Optics 2022-02-10 v1 Applied Physics

Abstract

Visible light integrated photonics is emerging as a promising technology for the realization of optical devices for applications in sensing, quantum information and communications, imaging and displays. Among the existing photonic platforms, high-index contrast silicon nitride (Si3N4Si_{3}N_{4}) waveguides offer broadband transparency in the visible spectral range and a high scale of integration. As far as the complexity of photonic integrated circuits (PICs) increases, on-chip detectors are required to monitor their working point for reconfiguration and stabilization operations. In this work we present a compact in-line power monitor integrated in Si3N4Si_{3}N_{4} waveguides that operates in the red-light wavelength range (660 nm). The proposed device exploits the photoconductivity of a hydrogenated amorphous silicon (a-Si:H) film employed as a coating layer of the optical waveguide. Experimental results show a responsivity of 30 mA/W, a sensitivity of -45 dBm and a sub-μ{\mu}s time response. These features enable the use of the proposed photoconductor for high-sensitivity monitoring and control of visible-light Si3N4Si_{3}N_{4} PICs.

Keywords

Cite

@article{arxiv.2202.04413,
  title  = {Amorphous-silicon visible-light detector integrated in silicon nitride waveguides},
  author = {Christian De Vita and Fabio Toso and Natale Giovanni Pruiti and Charalambos Klitis and Giorgio Ferrari and Marc Sorel and Andrea Melloni and Francesco Morichetti},
  journal= {arXiv preprint arXiv:2202.04413},
  year   = {2022}
}
R2 v1 2026-06-24T09:28:07.699Z