Low-noise, high-repetition-rate mode-locked solid-state lasers are attractive for precision measurement and microwave generation, but the best lasers in terms of noise performance still consist of complex, bulky optical setups, which limits their range of applications. In this Letter, we present an approach for producing highly stable pulse trains with a record-low residual integrated offset frequency phase noise of 14 mrad at 1 GHz fundamental repetition rate using a monolithic mode-locked solid-state laser. The compact monolithic design simplifies implementation of the laser by fixing the cavity parameters and operates using just 265 mW of 980 nm pump light
We report what is to our knowledge the lowest phase and amplitude noise characteristics achieved to ...
Mode-locked laser designs for both time and frequency domain based applications are presented. It is...
Recent experimental work on semiconductor-based harmonically mode-locked lasers geared toward low no...
A new design of all fiber-based, mode-locked laser with ultra-low phase noise of -158 dBc/Hz at 1MHz...
A semiconductor-based mode-locked laser source with low repetition rate, ultralow amplitude, and pha...
Monolithic high-repetition-rate lasers have drawn considerable attention for applications in photoni...
We report a semiconductor-based, low-noise, 10.24 GHz actively mode-locked laser with 4.65 fs of rel...
A semiconductor-based mode-locked laser source with low repetition rate, ultralow amplitude, and pha...
We report a semiconductor-based, low-noise, 10.24 GHz actively mode-locked laser with 4.65 fs of rel...
A 37.6GHz pulse train is generated by a monolithic semiconductor mode-locked laser and subsequent pu...
We present the first monolithically integrated semiconductor pulse source consisting of a mode-locke...
International audienceWe demonstrate the first ultra-stable microwave generation based on a 1.5-μm d...
In this letter, we report, what is to our knowledge, the lowest-noise pulsetrain produced to date wi...
We report on the development of an ultralow-noise, external-cavity, actively mode-locked semiconduct...
We report on the development of an ultralow-noise, external-cavity, actively mode-locked semiconduct...
We report what is to our knowledge the lowest phase and amplitude noise characteristics achieved to ...
Mode-locked laser designs for both time and frequency domain based applications are presented. It is...
Recent experimental work on semiconductor-based harmonically mode-locked lasers geared toward low no...
A new design of all fiber-based, mode-locked laser with ultra-low phase noise of -158 dBc/Hz at 1MHz...
A semiconductor-based mode-locked laser source with low repetition rate, ultralow amplitude, and pha...
Monolithic high-repetition-rate lasers have drawn considerable attention for applications in photoni...
We report a semiconductor-based, low-noise, 10.24 GHz actively mode-locked laser with 4.65 fs of rel...
A semiconductor-based mode-locked laser source with low repetition rate, ultralow amplitude, and pha...
We report a semiconductor-based, low-noise, 10.24 GHz actively mode-locked laser with 4.65 fs of rel...
A 37.6GHz pulse train is generated by a monolithic semiconductor mode-locked laser and subsequent pu...
We present the first monolithically integrated semiconductor pulse source consisting of a mode-locke...
International audienceWe demonstrate the first ultra-stable microwave generation based on a 1.5-μm d...
In this letter, we report, what is to our knowledge, the lowest-noise pulsetrain produced to date wi...
We report on the development of an ultralow-noise, external-cavity, actively mode-locked semiconduct...
We report on the development of an ultralow-noise, external-cavity, actively mode-locked semiconduct...
We report what is to our knowledge the lowest phase and amplitude noise characteristics achieved to ...
Mode-locked laser designs for both time and frequency domain based applications are presented. It is...
Recent experimental work on semiconductor-based harmonically mode-locked lasers geared toward low no...