The ability to generate phase-stabilized trains of ultrafast laser pulses by mode-locking underpins photonics research in fields, such as precision metrology and spectroscopy. However, the complexity of conventional mode-locked laser systems has hindered their realization at the nanoscale. Here we demonstrate that GaAs-AlGaAs nanowire lasers are capable of emitting pairs of phase-locked picosecond laser pulses with a repetition frequency up to 200 GHz when subject to incoherent pulsed optical excitation. By probing the two-pulse interference spectra, we show that pulse pairs remain mutually coherent over timescales extending to 30 ps, much longer than the emitted laser pulse duration (≤3 ps). Simulations performed by solving the optical Blo...
We demonstrate the first semiconductor mode-locked lasers for ultrashort pulse generation at the 760...
An optical pulse injection locking technique is employed to generate shorter pulses from a passively...
In this paper, we present results from monolithic passively mode-locked GaAs/AlGaAs quantum well las...
The ability to generate phase-stabilized trains of ultrafast laser pulses by mode-locking underpins ...
Semiconductor nanowire lasers operate at ultrafast timescales; here we report their temporal dynamic...
The last two decades have witnessed the fruitful research on nanoscale semiconductor nanolasers due ...
We present combined experimental and theoretical investigations of the picosecond emission dynamics ...
We study the possibility for ultrashort pulse generation from THz quantum cascade lasers via the col...
An optical pulse injection locking technique is employed to generate shorter pulses from a passively...
Regions of stability in two laterally-coupled InP nanowire lasers are analysed in terms of their sep...
We demonstrate a technique to measure the intrinsic capture lifetime, using frequency-resolved four ...
We experimentally demonstrate optical clock recovery from quantum dot mode-locked semiconductor lase...
We demonstrate the first semiconductor mode-locked lasers for ultrashort pulse generation at the 760...
An optical pulse injection locking technique is employed to generate shorter pulses from a passively...
In this paper, we present results from monolithic passively mode-locked GaAs/AlGaAs quantum well las...
The ability to generate phase-stabilized trains of ultrafast laser pulses by mode-locking underpins ...
Semiconductor nanowire lasers operate at ultrafast timescales; here we report their temporal dynamic...
The last two decades have witnessed the fruitful research on nanoscale semiconductor nanolasers due ...
We present combined experimental and theoretical investigations of the picosecond emission dynamics ...
We study the possibility for ultrashort pulse generation from THz quantum cascade lasers via the col...
An optical pulse injection locking technique is employed to generate shorter pulses from a passively...
Regions of stability in two laterally-coupled InP nanowire lasers are analysed in terms of their sep...
We demonstrate a technique to measure the intrinsic capture lifetime, using frequency-resolved four ...
We experimentally demonstrate optical clock recovery from quantum dot mode-locked semiconductor lase...
We demonstrate the first semiconductor mode-locked lasers for ultrashort pulse generation at the 760...
An optical pulse injection locking technique is employed to generate shorter pulses from a passively...
In this paper, we present results from monolithic passively mode-locked GaAs/AlGaAs quantum well las...