We have recently characterized spirals waveguides based on 4 Îm thick strip waveguides with suitably designed lowloss micron scale bends. Different bends and different lengths have been tested to extrapolate propagation losses and bending losses. In particular lowest bending losses have been found to be smaller than 0.01 dB per turn, while propagation losses are about 0.15 dB/cm. Very small footprint is achieved thanks to a novel bend concept combined to waveguide pitches of a few microns. The unique properties of our waveguides make our platform the ideal one for low loss long spiral waveguides with very small footprin
Strong confinement of light in silicon waveguides allows for sharp bends and, as a result, high-dens...
We present our recent breakthrough for high density integration in micron-scale thick semiconductor ...
We present our recent breakthrough for high density integration in micron-scale thick semiconductor ...
We have recently characterized spirals waveguides based on 4 Îm thick strip waveguides with suitably...
Long and yet compact spiral waveguides based on micron-scale silicon strip waveguides has been enabl...
Long and yet compact spiral waveguides based on micron-scale silicon strip waveguides has been enabl...
We demonstrate theoretically and experimentally how highly multimodal high index contrast waveguides...
We demonstrate theoretically and experimentally how highly multimodal high index contrast waveguides...
Abstract We characterize an approach to make compact low loss silica on silicon waveguides and achie...
Long spiral waveguides with small footprint and low-loss were fabricated on a micron-thick SOI platf...
Long spiral waveguides with small footprint and low-loss were fabricated on a micron-thick SOI platf...
The minimum bending radius of optical waveguides is typically the most important parameter that defi...
The minimum bending radius of optical waveguides is typically the most important parameter that defi...
Abstract We characterize an approach to make compact low loss silica on silicon waveguides and achie...
Waveguide bend is an indispensable component in the on-chip compact photonic integrated circuits (PI...
Strong confinement of light in silicon waveguides allows for sharp bends and, as a result, high-dens...
We present our recent breakthrough for high density integration in micron-scale thick semiconductor ...
We present our recent breakthrough for high density integration in micron-scale thick semiconductor ...
We have recently characterized spirals waveguides based on 4 Îm thick strip waveguides with suitably...
Long and yet compact spiral waveguides based on micron-scale silicon strip waveguides has been enabl...
Long and yet compact spiral waveguides based on micron-scale silicon strip waveguides has been enabl...
We demonstrate theoretically and experimentally how highly multimodal high index contrast waveguides...
We demonstrate theoretically and experimentally how highly multimodal high index contrast waveguides...
Abstract We characterize an approach to make compact low loss silica on silicon waveguides and achie...
Long spiral waveguides with small footprint and low-loss were fabricated on a micron-thick SOI platf...
Long spiral waveguides with small footprint and low-loss were fabricated on a micron-thick SOI platf...
The minimum bending radius of optical waveguides is typically the most important parameter that defi...
The minimum bending radius of optical waveguides is typically the most important parameter that defi...
Abstract We characterize an approach to make compact low loss silica on silicon waveguides and achie...
Waveguide bend is an indispensable component in the on-chip compact photonic integrated circuits (PI...
Strong confinement of light in silicon waveguides allows for sharp bends and, as a result, high-dens...
We present our recent breakthrough for high density integration in micron-scale thick semiconductor ...
We present our recent breakthrough for high density integration in micron-scale thick semiconductor ...