A mode-locked extended cavity quantum well ring laser at 1.58 μm with a repetition rate of 2.5 GHz in the form of a photonic integrated circuit is presented. The device is realized using InP-based active-passive integration technology. The 33 mm long cavity contains gain, saturable absorption, and passive waveguide sections as well as phase shifter sections to enable fine tuning of the spectral position of the lasing modes. Passive and hybrid mode-locked operation, along with the wavelength tuning of the laser modes, are experimentally demonstrated. In the passive mode-locking regime, a beat signal at the fundamental round trip frequency with a 3 dB bandwidth of 6.1 kHz is produced on a fast photo diode
We report on a passively mode-locked InP/InGaAsP multiple quantum well semiconductor ring laser that...
We report on a passively mode-locked InP/InGaAsP multiple quantum well semiconductor ring laser that...
A 30 GHz mode-locked laser in PIC is presented using InP-based active-passive integration technology...
A mode-locked extended cavity quantum well ring laser at 1.58 μm with a repetition rate of 2.5 GHz i...
\u3cp\u3eA mode-locked extended cavity quantum well ring laser at 1.58 μm with a repetition rate of ...
A passively mode locked extended cavity quantum well ring laser at 1.58 µm with repetition rate of 2...
A passively mode locked extended cavity quantum well ring laser at 1.58 µm with repetition rate of 2...
A mode-locked extended cavity quantum well ring laser at 1.58 μm with a repetition rate of 2.5 GHz i...
A mode-locked extended cavity quantum well ring laser at 1.58 μm with a repetition rate of 2.5 GHz i...
A passively mode locked extended cavity quantum well ring laser at 1.58 µm with repetition rate of 2...
A passively mode locked extended cavity quantum well ring laser at 1.58 µm with repetition rate of 2...
A passively mode locked extended cavity quantum well ring laser at 1.58 µm with repetition rate of 2...
A passively mode locked extended cavity quantum well ring laser at 1.58 µm with repetition rate of 2...
We report on a passively modelocked InP/InGaAsP quantum well semiconductor ring laser which operates...
A 30 GHz mode-locked laser in PIC is presented using InP-based active-passive integration technology...
We report on a passively mode-locked InP/InGaAsP multiple quantum well semiconductor ring laser that...
We report on a passively mode-locked InP/InGaAsP multiple quantum well semiconductor ring laser that...
A 30 GHz mode-locked laser in PIC is presented using InP-based active-passive integration technology...
A mode-locked extended cavity quantum well ring laser at 1.58 μm with a repetition rate of 2.5 GHz i...
\u3cp\u3eA mode-locked extended cavity quantum well ring laser at 1.58 μm with a repetition rate of ...
A passively mode locked extended cavity quantum well ring laser at 1.58 µm with repetition rate of 2...
A passively mode locked extended cavity quantum well ring laser at 1.58 µm with repetition rate of 2...
A mode-locked extended cavity quantum well ring laser at 1.58 μm with a repetition rate of 2.5 GHz i...
A mode-locked extended cavity quantum well ring laser at 1.58 μm with a repetition rate of 2.5 GHz i...
A passively mode locked extended cavity quantum well ring laser at 1.58 µm with repetition rate of 2...
A passively mode locked extended cavity quantum well ring laser at 1.58 µm with repetition rate of 2...
A passively mode locked extended cavity quantum well ring laser at 1.58 µm with repetition rate of 2...
A passively mode locked extended cavity quantum well ring laser at 1.58 µm with repetition rate of 2...
We report on a passively modelocked InP/InGaAsP quantum well semiconductor ring laser which operates...
A 30 GHz mode-locked laser in PIC is presented using InP-based active-passive integration technology...
We report on a passively mode-locked InP/InGaAsP multiple quantum well semiconductor ring laser that...
We report on a passively mode-locked InP/InGaAsP multiple quantum well semiconductor ring laser that...
A 30 GHz mode-locked laser in PIC is presented using InP-based active-passive integration technology...