We present an integrated hybrid semiconductor-dielectric (InP-Si 3 N 4 ) waveguide laser that generates frequency combs at a wavelength around 1.5 μ m with a record-low intrinsic optical linewidth of 34 kHz. This is achieved by extending the cavity photon lifetime using a low-loss dielectric waveguide circuit. In our experimental demonstration, the on-chip, effective optical path length of the laser cavity is extended to 6 cm. The resulting linewidth narrowing shows the high potential of on-chip, highly coherent frequency combs with direct electrical pumping, based on hybrid and heterogeneous integrated circuits making use of low-loss dielectric waveguides
Optical frequency combs emerge as a promising technology that enables highly sensitive, near-real-ti...
We report on a novel type of laser in which a semiconductor optical amplifier (SOA) receives frequen...
In this thesis we describe investigations of a novel class of semiconductor-glass waveguide hybrid l...
We present an integrated hybrid semiconductor-dielectric (InP-Si 3 N 4 ) waveguide laser that genera...
Optical frequency combs based on diode lasers are becoming instrumental for numerous applications ba...
Optical frequency combs based on diode lasers are becoming instrumental for numerous applications ba...
We present a hybrid integrated InP-Si3N4 laser that generates frequency combs with a record-low intr...
We demonstrate the first on-chip laser frequency comb based on hybrid integration with low-loss Si3N...
We demonstrate the first on-chip laser frequency comb based on hybrid integration with low-loss Si3N...
We present an integrated semiconductor-dielectric hybrid dual-frequency laser operating in the 1.5 u...
We present an integrated semiconductor-dielectric hybrid dual-frequency laser operating in the 1.5 μ...
We demonstrate a hybrid integrated and widely tunable diode laser with an intrinsic linewidth as nar...
Hybrid integration of semiconductor optical amplifiers with frequency-selective feedback circuits, i...
Generating optical combs in a small form factor is of utmost importance for a wide range of applicat...
Hybrid integrated semiconductor laser sources offering extremely narrow spectral linewidth, as well ...
Optical frequency combs emerge as a promising technology that enables highly sensitive, near-real-ti...
We report on a novel type of laser in which a semiconductor optical amplifier (SOA) receives frequen...
In this thesis we describe investigations of a novel class of semiconductor-glass waveguide hybrid l...
We present an integrated hybrid semiconductor-dielectric (InP-Si 3 N 4 ) waveguide laser that genera...
Optical frequency combs based on diode lasers are becoming instrumental for numerous applications ba...
Optical frequency combs based on diode lasers are becoming instrumental for numerous applications ba...
We present a hybrid integrated InP-Si3N4 laser that generates frequency combs with a record-low intr...
We demonstrate the first on-chip laser frequency comb based on hybrid integration with low-loss Si3N...
We demonstrate the first on-chip laser frequency comb based on hybrid integration with low-loss Si3N...
We present an integrated semiconductor-dielectric hybrid dual-frequency laser operating in the 1.5 u...
We present an integrated semiconductor-dielectric hybrid dual-frequency laser operating in the 1.5 μ...
We demonstrate a hybrid integrated and widely tunable diode laser with an intrinsic linewidth as nar...
Hybrid integration of semiconductor optical amplifiers with frequency-selective feedback circuits, i...
Generating optical combs in a small form factor is of utmost importance for a wide range of applicat...
Hybrid integrated semiconductor laser sources offering extremely narrow spectral linewidth, as well ...
Optical frequency combs emerge as a promising technology that enables highly sensitive, near-real-ti...
We report on a novel type of laser in which a semiconductor optical amplifier (SOA) receives frequen...
In this thesis we describe investigations of a novel class of semiconductor-glass waveguide hybrid l...