We present a simple and practical strategy that allows to design high-efficiency grating couplers. The technique is based on the simultaneous apodization of two structural parameters: the grating period and the fill-factor, along with the optimization of the grating coupler etching depth. Considering a 260 nm Si-thick Silicon-on-insulator platform, we numerically demonstrated a coupling efficiency of -0.8 dB (83%), well matching the experimental value of -0.9 dB (81%). Thanks to the optimized design, these results represent the best performance ever reported in the literature for SOI structures without the use of any back-reflector
We describe a high-efficiency grating coupler (GC) fabricated on a silicon-on-insulator wafer with 2...
Surface grating couplers are key components to couple light between planar waveguide circuits in sil...
Grating couplers can be more efficient than end-fire coupling, in coupling light into a thin film wa...
We present a theoretical optimisation of 1D apodized grating couplers in a “pure” Silicon-On-Insulat...
International audienceWe present experimental results of efficient subwavelength index engineered su...
The aim of this project is to fabricate highly efficient grating couplers in thin-film silicon-on-in...
The coupling efficiency of a surface grating coupler is optimized for a an arbitrary buried oxide th...
Abstract Efficient grating couplers (GCs) for perfectly vertical coupling are difficult to realize d...
The aim of this project is to fabricate highly efficient grating couplers in thin-film silicon-on-in...
Silicon-on-insulator has become a promising platform for high-density integrated photonics circuits....
We present a theoretical optimisation of 1D apodized grating couplers in a "pure" Silicon-On-Insulat...
International audienceSilicon-on-insulator (SOI) offers an unprecedented miniaturization capability ...
We report the design and experimental characterization of a SOI grating coupler which shows, for the...
We report the design and experimental characterization of a SOI grating coupler which shows, for the...
[[abstract]]We design and fabricate an efficient broadband grating coupler (GC) on a 400nm-thick sil...
We describe a high-efficiency grating coupler (GC) fabricated on a silicon-on-insulator wafer with 2...
Surface grating couplers are key components to couple light between planar waveguide circuits in sil...
Grating couplers can be more efficient than end-fire coupling, in coupling light into a thin film wa...
We present a theoretical optimisation of 1D apodized grating couplers in a “pure” Silicon-On-Insulat...
International audienceWe present experimental results of efficient subwavelength index engineered su...
The aim of this project is to fabricate highly efficient grating couplers in thin-film silicon-on-in...
The coupling efficiency of a surface grating coupler is optimized for a an arbitrary buried oxide th...
Abstract Efficient grating couplers (GCs) for perfectly vertical coupling are difficult to realize d...
The aim of this project is to fabricate highly efficient grating couplers in thin-film silicon-on-in...
Silicon-on-insulator has become a promising platform for high-density integrated photonics circuits....
We present a theoretical optimisation of 1D apodized grating couplers in a "pure" Silicon-On-Insulat...
International audienceSilicon-on-insulator (SOI) offers an unprecedented miniaturization capability ...
We report the design and experimental characterization of a SOI grating coupler which shows, for the...
We report the design and experimental characterization of a SOI grating coupler which shows, for the...
[[abstract]]We design and fabricate an efficient broadband grating coupler (GC) on a 400nm-thick sil...
We describe a high-efficiency grating coupler (GC) fabricated on a silicon-on-insulator wafer with 2...
Surface grating couplers are key components to couple light between planar waveguide circuits in sil...
Grating couplers can be more efficient than end-fire coupling, in coupling light into a thin film wa...