We present a detailed study of parameter sweeps of silicon photonic arrayed waveguide gratings (AWG), looking into the effects of phase errors in the delay lines, which are induced by fabrication variation. We fabricated AWGs with 8 wavelength channels spaced 200 GHz and 400 GHz apart. We swept the waveguide width of the delay lines, and also performed a sweep where we introduced increments of length to the waveguides to emulate different AWG layouts and look into the effect of the phase errors. With this more detailed study we could quantitatively confirm the results of earlier studies, showing the wider waveguides reduce the effect of phase errors and dramatically improve the performance of the AWGs in terms of insertion loss and crosstal...
We have designed, fabricated, and characterized a 1 x 8 ultrasmall compact arrayed-waveguide grating...
Silicon is the most ubiquitous material in the electronics industry, and is now expected to revoluti...
Silicon is the most ubiquitous material in the electronics industry, and is now expected to revoluti...
We present a detailed study of parameter sweeps of silicon photonic arrayed waveguide gratings (AWG)...
We studied the impact of the lithography mask discretization on silicon arrayed waveguide grating (A...
We studied the impact of the lithography mask discretization on silicon arrayed waveguide grating (A...
In this paper, we present a method for analysis of phase errors and power truncation in SiGe/Si grad...
International audienceIn this paper, we present a method for analysis of phase errors and power trun...
In this paper, we present a method for analysis of phase errors and power truncation in SiGe/Si grad...
crosstalk is about 20 dB, and the insertion loss is between 10.4 dB for the central port and 11.9 dB...
We describe the correlation between the measured width of silicon waveguides fabricated with 193 nm ...
We describe the correlation between the measured width of silicon waveguides fabricated with 193 nm ...
We present a compact interferometer circuit to extract multiple model parameters of on-chip waveguid...
This thesis proposed and demonstrated a flat-spectral response Arrayed Waveguide Grating (AWG) in Si...
We present a compact interferometer circuit to extract multiple model parameters of on-chip waveguid...
We have designed, fabricated, and characterized a 1 x 8 ultrasmall compact arrayed-waveguide grating...
Silicon is the most ubiquitous material in the electronics industry, and is now expected to revoluti...
Silicon is the most ubiquitous material in the electronics industry, and is now expected to revoluti...
We present a detailed study of parameter sweeps of silicon photonic arrayed waveguide gratings (AWG)...
We studied the impact of the lithography mask discretization on silicon arrayed waveguide grating (A...
We studied the impact of the lithography mask discretization on silicon arrayed waveguide grating (A...
In this paper, we present a method for analysis of phase errors and power truncation in SiGe/Si grad...
International audienceIn this paper, we present a method for analysis of phase errors and power trun...
In this paper, we present a method for analysis of phase errors and power truncation in SiGe/Si grad...
crosstalk is about 20 dB, and the insertion loss is between 10.4 dB for the central port and 11.9 dB...
We describe the correlation between the measured width of silicon waveguides fabricated with 193 nm ...
We describe the correlation between the measured width of silicon waveguides fabricated with 193 nm ...
We present a compact interferometer circuit to extract multiple model parameters of on-chip waveguid...
This thesis proposed and demonstrated a flat-spectral response Arrayed Waveguide Grating (AWG) in Si...
We present a compact interferometer circuit to extract multiple model parameters of on-chip waveguid...
We have designed, fabricated, and characterized a 1 x 8 ultrasmall compact arrayed-waveguide grating...
Silicon is the most ubiquitous material in the electronics industry, and is now expected to revoluti...
Silicon is the most ubiquitous material in the electronics industry, and is now expected to revoluti...