We report mode locking in lasers integrated with semiconductor optical amplifiers, using either conventional or phase shifted sampled grating distributed Bragg reflectors(DBRs). For a conventional sampled grating with a continuous grating coupling coefficient of ~80 cm-1, mode-locking was observed at a fundamental frequency of 628 GHz and second harmonic of 1.20 THz. The peak output power was up to 142 mW. In the phase shifted sampled grating design, the grating is present along the entire length of the reflector with π-phase shift steps within each sampled section. The effective coupling coefficient is therefore increased substantially. Although the continuous grating coupling coefficient for the phase shifted gratings was reduced to ~23 c...
Semiconductor diode lasers have a wide variety of applications in optical communications, spectrosco...
Integrated mode-locked laser diodes are effective sources of periodic sequences of optical pulses, w...
We report 628 GHz and 1.20 THz pulse repetition frequencies with 142 mW peak powers from a passively...
We report mode locking in lasers integrated with semiconductor optical amplifiers, using either conv...
Mode-locking at repetition frequencies of 800 GHz and 1 THz is reported in pi-phase-shifted sampled ...
Mode-locking at repetition frequencies of 800 GHz and 1 THz is reported in pi-phase-shifted sampled ...
We report a sampled grating distributed Bragg reflector (SGDBR) laser with two different gratings wh...
Optical Bragg gratings are finding new applications in high frequency pulse generation and in multip...
Optical Bragg gratings are finding new applications in high frequency pulse generation and in multip...
We describe mode locked laser diodes (MLLDs) operating from 40 GHz to >1 THz. Below 40 GHz, opera...
Semiconductor diode lasers have a wide variety of applications in optical communications, spectrosco...
We present a highly reproducible method of producing terahertz (THz) optical pulses using a class of...
We present a highly reproducible method of producing terahertz (THz) optical pulses using a class of...
We present the first demonstration of reproducible harmonic mode-locked operation from a novel desig...
We present the first demonstration of reproducible harmonic mode-locked operation from a novel desig...
Semiconductor diode lasers have a wide variety of applications in optical communications, spectrosco...
Integrated mode-locked laser diodes are effective sources of periodic sequences of optical pulses, w...
We report 628 GHz and 1.20 THz pulse repetition frequencies with 142 mW peak powers from a passively...
We report mode locking in lasers integrated with semiconductor optical amplifiers, using either conv...
Mode-locking at repetition frequencies of 800 GHz and 1 THz is reported in pi-phase-shifted sampled ...
Mode-locking at repetition frequencies of 800 GHz and 1 THz is reported in pi-phase-shifted sampled ...
We report a sampled grating distributed Bragg reflector (SGDBR) laser with two different gratings wh...
Optical Bragg gratings are finding new applications in high frequency pulse generation and in multip...
Optical Bragg gratings are finding new applications in high frequency pulse generation and in multip...
We describe mode locked laser diodes (MLLDs) operating from 40 GHz to >1 THz. Below 40 GHz, opera...
Semiconductor diode lasers have a wide variety of applications in optical communications, spectrosco...
We present a highly reproducible method of producing terahertz (THz) optical pulses using a class of...
We present a highly reproducible method of producing terahertz (THz) optical pulses using a class of...
We present the first demonstration of reproducible harmonic mode-locked operation from a novel desig...
We present the first demonstration of reproducible harmonic mode-locked operation from a novel desig...
Semiconductor diode lasers have a wide variety of applications in optical communications, spectrosco...
Integrated mode-locked laser diodes are effective sources of periodic sequences of optical pulses, w...
We report 628 GHz and 1.20 THz pulse repetition frequencies with 142 mW peak powers from a passively...