Microdisk lasers heterogeneously Integrated with SOI are promising sources for photonic Integrated circuits based on silicon. The microdisk lasers are only a few micrometers In size and they allow for wafer scale fabrication. We have demonstrated a new design of an electrically Injected microdisk laser bonded on SOI with a considerable Improvement of the performance. We observed threshold currents as low as 350 muA and output power up to 120 muW for a 7.5 mum microdisk diameter under continuous-wave operation. Compared to previous results this comes down to a 30% reduction of the threshold current and a maximum output power which is increased by more than a factor of 10
We demonstrate unidirectional bistability in microdisk lasers electrically pumped and heterogeneousl...
We demonstrate unidirectional bistability in microdisk lasers electrically pumped and heterogeneousl...
Compact InP-based microdisk lasers on SOI completely fabricated in a 200 mm CMOS pilot line are pres...
Microdisk lasers heterogeneously Integrated with SOI are promising sources for photonic Integrated c...
Microdisk lasers heterogeneously Integrated with SOI are promising sources for photonic Integrated c...
Microdisk lasers heterogeneously Integrated with SOI are promising sources for photonic Integrated c...
Microdisk lasers heterogeneously Integrated with SOI are promising sources for photonic Integrated c...
Microdisk lasers heterogeneously Integrated with SOI are promising sources for photonic Integrated c...
Microdisk lasers heterogeneously Integrated with SOI are promising sources for photonic Integrated c...
Microdisk lasers heterogeneously Integrated with SOI are promising sources for photonic Integrated c...
Microdisk lasers heterogeneously Integrated with SOI are promising sources for photonic Integrated c...
Microdisk lasers heterogeneously Integrated with SOI are promising sources for photonic Integrated c...
Compact InP-based microdisk lasers on SOI completely fabricated in a 200 mm CMOS pilot line are pres...
We demonstrate unidirectional bistability in microdisk lasers electrically pumped and heterogeneousl...
We demonstrate unidirectional bistability in microdisk lasers electrically pumped and heterogeneousl...
We demonstrate unidirectional bistability in microdisk lasers electrically pumped and heterogeneousl...
We demonstrate unidirectional bistability in microdisk lasers electrically pumped and heterogeneousl...
Compact InP-based microdisk lasers on SOI completely fabricated in a 200 mm CMOS pilot line are pres...
Microdisk lasers heterogeneously Integrated with SOI are promising sources for photonic Integrated c...
Microdisk lasers heterogeneously Integrated with SOI are promising sources for photonic Integrated c...
Microdisk lasers heterogeneously Integrated with SOI are promising sources for photonic Integrated c...
Microdisk lasers heterogeneously Integrated with SOI are promising sources for photonic Integrated c...
Microdisk lasers heterogeneously Integrated with SOI are promising sources for photonic Integrated c...
Microdisk lasers heterogeneously Integrated with SOI are promising sources for photonic Integrated c...
Microdisk lasers heterogeneously Integrated with SOI are promising sources for photonic Integrated c...
Microdisk lasers heterogeneously Integrated with SOI are promising sources for photonic Integrated c...
Microdisk lasers heterogeneously Integrated with SOI are promising sources for photonic Integrated c...
Compact InP-based microdisk lasers on SOI completely fabricated in a 200 mm CMOS pilot line are pres...
We demonstrate unidirectional bistability in microdisk lasers electrically pumped and heterogeneousl...
We demonstrate unidirectional bistability in microdisk lasers electrically pumped and heterogeneousl...
We demonstrate unidirectional bistability in microdisk lasers electrically pumped and heterogeneousl...
We demonstrate unidirectional bistability in microdisk lasers electrically pumped and heterogeneousl...
Compact InP-based microdisk lasers on SOI completely fabricated in a 200 mm CMOS pilot line are pres...