The generation of high frequency signals into the terahertz range is dominated by photonics-based systems pushing the development of ultra-broadband wireless communication links. Recently, photonic integrated circuits have been proposed to implement different photonic signal generation techniques offering different semiconductor laser structures. Here we present for the first time a dual wavelength source for optical heterodyning based on hybrid integration of active InP elements and thermo-optically tunable polymer waveguide structures. The chip integrates two external cavity lasers, each with an InP gain chip coupled to a polymer phase and Bragg gratings sections, combined with a Y-junction. Each laser has a wavelength tuning range over 2...
We demonstrate the hybrid integration of a multi-format tunable transmitter and a coherent optical r...
This paper describes the advantages that the introduction of photonic integration technologies can b...
The data rate of wireless communications systems has been increasing because of the new applications...
Abstract We report for the first time the successful wavelength stabilization of two hybrid integrat...
Photonics-based techniques spearhead the generation of high-frequency signals in the millimeter-and ...
Optical heterodyne signal generation is the most flexible photonic microwave generation technique. P...
We present an integrated semiconductor-dielectric hybrid dual-frequency laser operating in the 1.5 u...
We present two different on-chip photonic integrated circuit (PIC) structures for continuous-wave ge...
We present an integrated semiconductor-dielectric hybrid dual-frequency laser operating in the 1.5 μ...
Millimeter-waves (30-300 GHz) have interest due to the wide bandwidths available for carrying inform...
A comparative study of two different Photonic Integrated Circuits (PICs) structures for continuous-w...
This paper describes the advantages that the introduction of photonic integration technologies can b...
Butt-joint integration of InP based laser structures with monomode polymer waveguides was studied. U...
Millimeter-waves (30-300 GHz) have interest due to the wide bandwidths available for carrying inform...
We demonstrate the hybrid integration of a multi-format tunable transmitter and a coherent optical r...
This paper describes the advantages that the introduction of photonic integration technologies can b...
The data rate of wireless communications systems has been increasing because of the new applications...
Abstract We report for the first time the successful wavelength stabilization of two hybrid integrat...
Photonics-based techniques spearhead the generation of high-frequency signals in the millimeter-and ...
Optical heterodyne signal generation is the most flexible photonic microwave generation technique. P...
We present an integrated semiconductor-dielectric hybrid dual-frequency laser operating in the 1.5 u...
We present two different on-chip photonic integrated circuit (PIC) structures for continuous-wave ge...
We present an integrated semiconductor-dielectric hybrid dual-frequency laser operating in the 1.5 μ...
Millimeter-waves (30-300 GHz) have interest due to the wide bandwidths available for carrying inform...
A comparative study of two different Photonic Integrated Circuits (PICs) structures for continuous-w...
This paper describes the advantages that the introduction of photonic integration technologies can b...
Butt-joint integration of InP based laser structures with monomode polymer waveguides was studied. U...
Millimeter-waves (30-300 GHz) have interest due to the wide bandwidths available for carrying inform...
We demonstrate the hybrid integration of a multi-format tunable transmitter and a coherent optical r...
This paper describes the advantages that the introduction of photonic integration technologies can b...
The data rate of wireless communications systems has been increasing because of the new applications...