High-sensitivity transparent photoconductors in voltage-controlled silicon waveguides

Author:

Perino Alessandro1ORCID,Zanetto Francesco1ORCID,Petrini Matteo1,Toso Fabio1,Morichetti Francesco1ORCID,Melloni Andrea1ORCID,Ferrari Giorgio1,Sampietro Marco1

Affiliation:

1. Politecnico di Milano

Abstract

On-chip optical power monitors are essential elements to calibrate, stabilize, and reconfigure photonic integrated circuits. Many applications require in-line waveguide detectors, where a trade-off has to be found between large sensitivity and high transparency to the guided light. In this work, we demonstrate a transparent photoconductor integrated on standard low-doped silicon-on-insulator waveguides that reaches a photoconductive gain of more than 106 and an in-line sensitivity as high as −60 dBm. This performance is achieved by compensating the effect of electric charges in the cladding oxide through a bias voltage applied to the chip substrate or locally through a gate electrode on top of the waveguide, allowing one to tune on demand the conductivity of the core to the optimum level.

Funder

H2020 Industrial Leadership

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics

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