We report the observation of second-harmonic generation (SHG) in stoichiometric silicon nitride waveguides grown via low-pressure chemical vapor deposition (LPCVD). Quasi-rectangular waveguides with a large cross section were used, with a height of 1 µm and various different widths, from 0.6 to 1.2 µm, and with various lengths from 22 to 74 mm. Using a mode-locked laser delivering 6-ps pulses at 1064 nm wavelength with a repetition rate of 20 MHz, 15% of the incoming power was coupled through the waveguide, making maximum average powers of up to 15 mW available in the waveguide depending on the waveguide cross section. Second-harmonic output was observed with a delay of minutes to several hours after the initial turn-on of pump radiation, s...
Silicon photonics meets the electronics requirement of increased speed and bandwidth with on-chip op...
International audienceSilicon photonics meets the electronics requirement of increased speed and ban...
International audienceSilicon photonics meets the electronics requirement of increased speed and ban...
We present for the first time second harmonic generation in amorphous stoichiometric Si3N4 waveguide...
Integrated optical waveguides based on stoichiometric silicon nitride (Si3N4) have demonstrated reco...
Efficient second harmonic generation in integrated platforms is usually achieved by resonant structu...
Efficient second harmonic generation in integrated platforms is usually achieved by resonant structu...
Efficient second harmonic generation in integrated platforms is usually achieved by resonant structu...
Silicon photonics meets the electronics requirement of increased speed and bandwidth with on-chip op...
Strained silicon waveguides have been proposed to break the silicon centrosymmetry, which inhibits s...
Silicon photonics meets the electronics requirement of increased speed and bandwidth with on-chip op...
Silicon photonics meets the electronics requirement of increased speed and bandwidth with on-chip op...
We observe strong second-harmonic generation from silicon nitride films prepared on fused silica sub...
Silicon photonics meets the electronics requirement of increased speed and bandwidth with on-chip op...
Second order nonlinearities are inhibited in centrosymmetric crystals, like silicon. However, in the...
Silicon photonics meets the electronics requirement of increased speed and bandwidth with on-chip op...
International audienceSilicon photonics meets the electronics requirement of increased speed and ban...
International audienceSilicon photonics meets the electronics requirement of increased speed and ban...
We present for the first time second harmonic generation in amorphous stoichiometric Si3N4 waveguide...
Integrated optical waveguides based on stoichiometric silicon nitride (Si3N4) have demonstrated reco...
Efficient second harmonic generation in integrated platforms is usually achieved by resonant structu...
Efficient second harmonic generation in integrated platforms is usually achieved by resonant structu...
Efficient second harmonic generation in integrated platforms is usually achieved by resonant structu...
Silicon photonics meets the electronics requirement of increased speed and bandwidth with on-chip op...
Strained silicon waveguides have been proposed to break the silicon centrosymmetry, which inhibits s...
Silicon photonics meets the electronics requirement of increased speed and bandwidth with on-chip op...
Silicon photonics meets the electronics requirement of increased speed and bandwidth with on-chip op...
We observe strong second-harmonic generation from silicon nitride films prepared on fused silica sub...
Silicon photonics meets the electronics requirement of increased speed and bandwidth with on-chip op...
Second order nonlinearities are inhibited in centrosymmetric crystals, like silicon. However, in the...
Silicon photonics meets the electronics requirement of increased speed and bandwidth with on-chip op...
International audienceSilicon photonics meets the electronics requirement of increased speed and ban...
International audienceSilicon photonics meets the electronics requirement of increased speed and ban...