We demonstrate a complementary metal–oxide–semiconductor (CMOS)-compatible optical parametric Bragg amplifier on an ultra-silicon-rich nitride chip. The amplifier design incorporates advantageous group index properties in a nonlinear Bragg grating to circumvent phase matching limitations arising from the bulk material and waveguide dispersion. The grating structure further augments the effective nonlinear parameter of 800 W−1/m, considerably lowering the power required for the observation of strong parametric gain. On/off optical parametric gain of 20 dB is achieved using a low peak power of 1.6 W, in good agreement with numerical calculations. This represents a 7 dB improvement in the parametric gain compared to the absence of grating enha...
We theoretically investigate performance requirements to achieve on-chip optical parametric net-gain...
We report net gain in a continuous-wave-pumped parametric amplifier implemented in a meter-long disp...
The ability to amplify optical signals is of pivotal importance across science and technology. The d...
© 2018 SPIE. Optical parametric amplifiers rely on the high Kerr nonlinearities and low two-photon a...
Emerging compositionally engineered complementary metal-oxide-semiconductor (CMOS)-compatible platfo...
In this paper, we analytically describe the parametric amplification in ring resonators using silico...
Optical amplification is one of the main applications of nonlinear optics, and broadband optical par...
Optical amplification is one of the main applications of nonlinear optics, and broadband optical par...
CMOS platforms operating at the telecommunications wavelength either reside within the highly dissip...
We demonstrate continuous-wave phase-sensitive optical parametric amplification with 9.5 dB gain and...
Recently, our groups have introduced the notion of optical parametric amplification based on non-Her...
Optical amplifiers are essential in numerous photonic applications. Parametric amplifiers, relying o...
A width-modulated silicon waveguide is proposed to realize nondegenerate phase sensitive optical par...
Low noise optical amplifiers play a vital role in optical communications and signal processing. Rece...
We report net gain in a continuous-wave-pumped parametric amplifier implemented in a meter-long disp...
We theoretically investigate performance requirements to achieve on-chip optical parametric net-gain...
We report net gain in a continuous-wave-pumped parametric amplifier implemented in a meter-long disp...
The ability to amplify optical signals is of pivotal importance across science and technology. The d...
© 2018 SPIE. Optical parametric amplifiers rely on the high Kerr nonlinearities and low two-photon a...
Emerging compositionally engineered complementary metal-oxide-semiconductor (CMOS)-compatible platfo...
In this paper, we analytically describe the parametric amplification in ring resonators using silico...
Optical amplification is one of the main applications of nonlinear optics, and broadband optical par...
Optical amplification is one of the main applications of nonlinear optics, and broadband optical par...
CMOS platforms operating at the telecommunications wavelength either reside within the highly dissip...
We demonstrate continuous-wave phase-sensitive optical parametric amplification with 9.5 dB gain and...
Recently, our groups have introduced the notion of optical parametric amplification based on non-Her...
Optical amplifiers are essential in numerous photonic applications. Parametric amplifiers, relying o...
A width-modulated silicon waveguide is proposed to realize nondegenerate phase sensitive optical par...
Low noise optical amplifiers play a vital role in optical communications and signal processing. Rece...
We report net gain in a continuous-wave-pumped parametric amplifier implemented in a meter-long disp...
We theoretically investigate performance requirements to achieve on-chip optical parametric net-gain...
We report net gain in a continuous-wave-pumped parametric amplifier implemented in a meter-long disp...
The ability to amplify optical signals is of pivotal importance across science and technology. The d...