Reliable, efficient electrically pumped silicon-based lasers would enable full integration of photonic and electronic circuits, but have previously only been realized by wafer bonding. Here, we demonstrate continuous-wave InAs/GaAs quantum dot lasers directly grown on silicon substrates with a low threshold current density of 62.5 A cm–2, a room-temperature output power exceeding 105 mW and operation up to 120 °C. Over 3,100 h of continuous-wave operating data have been collected, giving an extrapolated mean time to failure of over 100,158 h. The realization of high-performance quantum dot lasers on silicon is due to the achievement of a low density of threading dislocations on the order of 105 cm−2 in the III–V epilayers by combining a nuc...
Summary form only given. III-V lasers grown on Si is the most promising solution to light sources on...
Direct integration of high-performance laser diodes on silicon will dramatically transform the world...
Direct integration of high-performance laser diodes on silicon will dramatically transform the world...
Reliable, efficient electrically pumped silicon-based lasers would enable full integration of photon...
Reliable, efficient electrically pumped silicon-based lasers would enable full integration of photon...
Monolithic integration of high-performance semiconductor lasers on silicon enables wafer-scale optic...
Monolithic integration of high-performance semiconductor lasers on silicon enables wafer-scale optic...
Direct integration of high-performance laser diodes on silicon will dramatically transform the world...
Quantum dot lasers epitaxially grown on Si are promising for an efficient light source for silicon p...
Direct epitaxial integration of III-V optoelectronic devices on Si offers a substantial manufacturin...
Electrically pumped on-chip C-band lasers provide additional flexibility for silicon photonics in th...
Electrically pumped on-chip C-band lasers provide additional flexibility for silicon photonics in th...
Electrically pumped on-chip C-band lasers provide additional flexibility for silicon photonics in th...
Electrically pumped on-chip C-band lasers provide additional flexibility for silicon photonics in th...
Direct integration of high-performance laser diodes on silicon will dramatically transform the world...
Summary form only given. III-V lasers grown on Si is the most promising solution to light sources on...
Direct integration of high-performance laser diodes on silicon will dramatically transform the world...
Direct integration of high-performance laser diodes on silicon will dramatically transform the world...
Reliable, efficient electrically pumped silicon-based lasers would enable full integration of photon...
Reliable, efficient electrically pumped silicon-based lasers would enable full integration of photon...
Monolithic integration of high-performance semiconductor lasers on silicon enables wafer-scale optic...
Monolithic integration of high-performance semiconductor lasers on silicon enables wafer-scale optic...
Direct integration of high-performance laser diodes on silicon will dramatically transform the world...
Quantum dot lasers epitaxially grown on Si are promising for an efficient light source for silicon p...
Direct epitaxial integration of III-V optoelectronic devices on Si offers a substantial manufacturin...
Electrically pumped on-chip C-band lasers provide additional flexibility for silicon photonics in th...
Electrically pumped on-chip C-band lasers provide additional flexibility for silicon photonics in th...
Electrically pumped on-chip C-band lasers provide additional flexibility for silicon photonics in th...
Electrically pumped on-chip C-band lasers provide additional flexibility for silicon photonics in th...
Direct integration of high-performance laser diodes on silicon will dramatically transform the world...
Summary form only given. III-V lasers grown on Si is the most promising solution to light sources on...
Direct integration of high-performance laser diodes on silicon will dramatically transform the world...
Direct integration of high-performance laser diodes on silicon will dramatically transform the world...