We report on design and measurement of a series of spot-size converters (SSCs) for adapting the optical mode size in an InP-based photonic integrated circuit. SSCs are designed to transfer the mode of a 0.6mm-thick high-contrast waveguide to that of a 3mm-thick low-contrast waveguide below the core layer using a vertical taper. Fabrication of the taper is compatible with the standard processing and coupling loss values below 1dB have been achieved. Based on the experimental results we have designed an improved structure which enables adiabatic vertical coupling for taper lengths below 1mm. The simulation results predict losses below 0.5d
Integrated spot size converters (SSCs) are key components for efficient coupling between Photonic In...
Highly integrated photonic InP circuits raise the demand for an augmented number of optical ports. T...
Highly integrated photonic InP circuits raise the demand for an augmented number of optical ports. T...
We report on design and measurement of a series of spot-size converters (SSCs) for adapting the opti...
We report on design and measurement of a series of spot-size converters (SSCs) for adapting the opti...
Low-loss spot size converters (SSC) are important elements for coupling photonic integrated circuits...
Low-loss spot size converters (SSC) are important elements for coupling photonic integrated circuits...
Low-loss spot size converters (SSC) are important elements for coupling photonic integrated circuits...
Low-loss spot size converters (SSC) are important elements for coupling photonic integrated circuits...
Low-loss spot size converters (SSC) are important elements for coupling photonic integrated circuits...
Integrated Spot-Size Converters (SSCs) are crucial for reducing the coupling loss between InP-based ...
Integrated spot size converters (SSCs) are key components for efficient coupling between Photonic In...
Spot size converters (waveguide tapers) are key elements for photonic integrated circuits (PICs) sin...
Integrated spot size converters (SSCs) are key components for efficient coupling between Photonic In...
Integrated spot size converters (SSCs) are key components for efficient coupling between Photonic In...
Integrated spot size converters (SSCs) are key components for efficient coupling between Photonic In...
Highly integrated photonic InP circuits raise the demand for an augmented number of optical ports. T...
Highly integrated photonic InP circuits raise the demand for an augmented number of optical ports. T...
We report on design and measurement of a series of spot-size converters (SSCs) for adapting the opti...
We report on design and measurement of a series of spot-size converters (SSCs) for adapting the opti...
Low-loss spot size converters (SSC) are important elements for coupling photonic integrated circuits...
Low-loss spot size converters (SSC) are important elements for coupling photonic integrated circuits...
Low-loss spot size converters (SSC) are important elements for coupling photonic integrated circuits...
Low-loss spot size converters (SSC) are important elements for coupling photonic integrated circuits...
Low-loss spot size converters (SSC) are important elements for coupling photonic integrated circuits...
Integrated Spot-Size Converters (SSCs) are crucial for reducing the coupling loss between InP-based ...
Integrated spot size converters (SSCs) are key components for efficient coupling between Photonic In...
Spot size converters (waveguide tapers) are key elements for photonic integrated circuits (PICs) sin...
Integrated spot size converters (SSCs) are key components for efficient coupling between Photonic In...
Integrated spot size converters (SSCs) are key components for efficient coupling between Photonic In...
Integrated spot size converters (SSCs) are key components for efficient coupling between Photonic In...
Highly integrated photonic InP circuits raise the demand for an augmented number of optical ports. T...
Highly integrated photonic InP circuits raise the demand for an augmented number of optical ports. T...