Self-assembled InAs/InP quantum dots and quantum dashes: Material structures and devices
The advances in lasers, electronic and photonic integrated circuits (EPIC), optical
interconnects as well as the modulation techniques allow the present day society to …
interconnects as well as the modulation techniques allow the present day society to …
Ultra-fast optical ranging using quantum-dash mode-locked laser diodes
P Trocha, JN Kemal, Q Gaimard, G Aubin, F Lelarge… - Scientific Reports, 2022 - nature.com
Laser-based light detection and ranging (LiDAR) is key to many applications in science and
industry. For many use cases, compactness and power efficiency are key, especially in high …
industry. For many use cases, compactness and power efficiency are key, especially in high …
Enhanced optical comb generation by gain-switching a single-mode semiconductor laser close to its relaxation oscillation frequency
We demonstrate, through experimental results and supporting numerical simulations, the
optimum conditions to generate an optical comb via gain-switching of a single-mode DFB …
optimum conditions to generate an optical comb via gain-switching of a single-mode DFB …
32QAM WDM transmission at 12 Tbit/s using a quantum-dash mode-locked laser diode (QD-MLLD) with external-cavity feedback
Chip-scale frequency comb generators lend themselves as multi-wavelength light sources in
highly scalable wavelength-division multiplexing (WDM) transmitters and coherent …
highly scalable wavelength-division multiplexing (WDM) transmitters and coherent …
Generation of flat optical frequency comb using cascaded PMs with combined harmonics
Y Cui, Z Wang, Y Xu, Y Jiang, J Yu… - IEEE photonics …, 2022 - ieeexplore.ieee.org
Flat optical frequency comb (OFC) can be generated by using single phase modulator (PM),
where combined harmonics are applied to drive the PM. However, the number of comb lines …
where combined harmonics are applied to drive the PM. However, the number of comb lines …
[HTML][HTML] Frequency pushing and pulling in semiconductor lasers subject to optical frequency comb injection
W Althobaity, S AlHarthi, N Al-Hosiny - Results in Engineering, 2024 - Elsevier
We theoretically investigate the frequency shift of a free-running semiconductor laser when
optically injected by an optical frequency comb. By numerical integration of the laser rate …
optically injected by an optical frequency comb. By numerical integration of the laser rate …
Amplitude and phase noise of frequency combs generated by single-section InAs/InP quantum-dash-based passively and actively mode-locked lasers
V Panapakkam, AP Anthur, V Vujicic… - IEEE Journal of …, 2016 - ieeexplore.ieee.org
We investigate the amplitude and phase noise of an optical frequency comb based on
InAs/InP quantum-dash mode-locked laser. The laser demonstrates low relative intensity …
InAs/InP quantum-dash mode-locked laser. The laser demonstrates low relative intensity …
A novel scheme for two-level stabilization of semiconductor mode-locked lasers using simultaneous optical injection and optical feedback
We introduce a novel scheme for the simultaneous reduction of time-bandwidth product
(TBP) and RF linewidth of quantum-dash two-section mode-locked lasers using optical …
(TBP) and RF linewidth of quantum-dash two-section mode-locked lasers using optical …
Recent advances in stabilization of mode-locked quantum dash lasers at 1.55 µm by dual-loop optical feedback
This paper reports the effectiveness of a variety of single-and dual-loop optical feedback
arrangements on stability of self-mode-locked two-section quantum dash lasers emitting at≈ …
arrangements on stability of self-mode-locked two-section quantum dash lasers emitting at≈ …
Fast optical sampling by electronic repetition-rate tuning using a single mode-locked laser diode
This paper demonstrates optical sampling by electronic repetition-rate tuning (OSBERT): a
single-laser optical sampling technique capable of fast scan rates and customisable scan …
single-laser optical sampling technique capable of fast scan rates and customisable scan …