InP membrane on silicon (IMOS) technology has shown high potential in realizing high-density photonic circuits with speed and energy benefits. Intrinsic active components offered by the InP membrane promise highest optoelectronic efficiencies. It can also be intimately integrated on electronics wafers with ultrashort interconnect lengths, paving a way towards the convergence of photonics and electronics.</p
Photonic integration in a micrometer-thick indium phosphide (InP) membrane on silicon (IMOS) offers ...
Recently a uni-traveling-carrier photodetector with high speed (> 67GHz) and a high-gain optical ...
Photonic integration in a micrometer-thick indium phosphide (InP) membrane on silicon (IMOS) offers ...
InP membrane on silicon (IMOS) technology has shown high potential in realizing high-density photoni...
Integration of light sources in silicon photonics is usually done with an active InP-based layer sta...
Integration of light sources in silicon photonics is usually done with an active InP-based layer sta...
Integration of light sources in silicon photonics is usually done with an active InP-based layer sta...
Integration of light sources in silicon photonics is usually done with an active InP-based layer sta...
Adding photonic functions to silicon electronics has become an important research theme in the last ...
Adding photonic functions to silicon electronics has become an important research theme in the last ...
Adding photonic functions to silicon electronics has become an important research theme in the last ...
Recently a novel photonic integration technology, based on a thin InP-based membrane, is emerging. T...
Recently a novel photonic integration technology, based on a thin InP-based membrane, is emerging. T...
Recently a novel photonic integration technology, based on a thin InP-based membrane, is emerging. T...
Adding photonic functions to silicon electronics has become an important research theme in the last ...
Photonic integration in a micrometer-thick indium phosphide (InP) membrane on silicon (IMOS) offers ...
Recently a uni-traveling-carrier photodetector with high speed (> 67GHz) and a high-gain optical ...
Photonic integration in a micrometer-thick indium phosphide (InP) membrane on silicon (IMOS) offers ...
InP membrane on silicon (IMOS) technology has shown high potential in realizing high-density photoni...
Integration of light sources in silicon photonics is usually done with an active InP-based layer sta...
Integration of light sources in silicon photonics is usually done with an active InP-based layer sta...
Integration of light sources in silicon photonics is usually done with an active InP-based layer sta...
Integration of light sources in silicon photonics is usually done with an active InP-based layer sta...
Adding photonic functions to silicon electronics has become an important research theme in the last ...
Adding photonic functions to silicon electronics has become an important research theme in the last ...
Adding photonic functions to silicon electronics has become an important research theme in the last ...
Recently a novel photonic integration technology, based on a thin InP-based membrane, is emerging. T...
Recently a novel photonic integration technology, based on a thin InP-based membrane, is emerging. T...
Recently a novel photonic integration technology, based on a thin InP-based membrane, is emerging. T...
Adding photonic functions to silicon electronics has become an important research theme in the last ...
Photonic integration in a micrometer-thick indium phosphide (InP) membrane on silicon (IMOS) offers ...
Recently a uni-traveling-carrier photodetector with high speed (> 67GHz) and a high-gain optical ...
Photonic integration in a micrometer-thick indium phosphide (InP) membrane on silicon (IMOS) offers ...