In this letter, we report a novel high-index-contrast silicon nitride arrayed waveguide grating (AWG) for very near-infrared wavelengths. This device is fabricated through a process compatible with a complementary metal-oxide-semiconductor fabrication line and is therefore suitable for mass fabrication. The large phase errors that usually accompany high-index-platform AWGs are partly mitigated through design and fabrication adaptions, in particular the implementation of a two-level etch scheme. Multiple devices are reported, among which a 0.3-mm(2) device which, after the subtraction of waveguides loss, has a -1.2 dB on-chip insertion loss at the peak of the central channel and 20-dB crosstalk for operation similar to 900 nm with a channel ...
We report on miniaturized optical spectrometers integrated on a photonic integrated circuit (PIC) pl...
OSA (Optical Society of America)In this work we will review the enormous potential of subwavelength ...
Recent progresses in silicon photonics have enabled many exciting applications in data communication...
In this letter, we report a novel high-index-contrast silicon nitride arrayed waveguide grating (AWG...
Abstract — In this letter, we report a novel high-index-contrast silicon nitride arrayed waveguide g...
Silicon nitride is a promising high-index material for dense photonic circuits and applications in t...
Arrayed Waveguide Grating (AWG) is a passive optical component, which have found applications in a w...
Abstract — Silicon nitride is a promising high-index material for dense photonic circuits and applic...
Silicon-on-nitride ridge waveguides are demonstrated and characterized at mid-and near-infrared opti...
Next-generation passive optical networks require integrated, polarization-insensitive wavelength-div...
Next-generation passive optical networks require integrated, polarization-insensitive wavelength-div...
We present passive, visible light silicon nitride waveguides fabricated on ≈ 100 µm thick 200 mm sil...
We present passive, visible light silicon nitride waveguides fabricated on ≈ 100 µm thick 200 mm sil...
We present passive, visible light silicon nitride waveguides fabricated on ≈ 100 µm thick 200 mm sil...
Silicon photonics is one of the most promising candidates to achieve lab-on-a-chip systems. Making u...
We report on miniaturized optical spectrometers integrated on a photonic integrated circuit (PIC) pl...
OSA (Optical Society of America)In this work we will review the enormous potential of subwavelength ...
Recent progresses in silicon photonics have enabled many exciting applications in data communication...
In this letter, we report a novel high-index-contrast silicon nitride arrayed waveguide grating (AWG...
Abstract — In this letter, we report a novel high-index-contrast silicon nitride arrayed waveguide g...
Silicon nitride is a promising high-index material for dense photonic circuits and applications in t...
Arrayed Waveguide Grating (AWG) is a passive optical component, which have found applications in a w...
Abstract — Silicon nitride is a promising high-index material for dense photonic circuits and applic...
Silicon-on-nitride ridge waveguides are demonstrated and characterized at mid-and near-infrared opti...
Next-generation passive optical networks require integrated, polarization-insensitive wavelength-div...
Next-generation passive optical networks require integrated, polarization-insensitive wavelength-div...
We present passive, visible light silicon nitride waveguides fabricated on ≈ 100 µm thick 200 mm sil...
We present passive, visible light silicon nitride waveguides fabricated on ≈ 100 µm thick 200 mm sil...
We present passive, visible light silicon nitride waveguides fabricated on ≈ 100 µm thick 200 mm sil...
Silicon photonics is one of the most promising candidates to achieve lab-on-a-chip systems. Making u...
We report on miniaturized optical spectrometers integrated on a photonic integrated circuit (PIC) pl...
OSA (Optical Society of America)In this work we will review the enormous potential of subwavelength ...
Recent progresses in silicon photonics have enabled many exciting applications in data communication...