Nonlinear polarization evolution (NPE) is among the most advanced techniques for obtaining ultrashort pulses with excellent optical performance. However, it is challenging to design environmentally stable NPE fiber oscillators using only polarization-maintaining (PM) fibers. Here, we use the same PM fiber and non-reciprocal phase shifter to design two different devices, which are capable of acting as effective NPE saturable absorbers (SAs) in two all-PM linear cavity fiber lasers. These two laser setups differ in the position of the non-reciprocal phase shifter, the presence of which is crucial for the proposed fiber lasers to reduce their mode-locking thresholds and achieve high repetition rates above 100 MHz. The mode-locking principle an...
This work is financially supported by National Natural Science Foundation of China (62275060); Natur...
Mode-locked fiber lasers are able to generate transform-limited optical pulses in picosecond and sub...
Mode-locked fiber lasers are able to generate transform-limited optical pulses in picosecond and sub...
Paper no. CF3L.3We demonstrate nonlinear-polarization-evolution mode-locking in a ring-cavity Yb-fib...
We experimentally demonstrate the realization of a half-polarization-maintaining (half-PM) fiber las...
For the first time, to the best of our knowledge, in the soliton regime, we demonstrate an L-band fi...
We investigate a new configuration of a mode-locked fiber laser by using a nonlinear polarization ro...
Fiber lasers have become one of the most important technologies in various industrial, medical and s...
Fiber lasers have become one of the most important technologies in various industrial, medical and s...
Fiber lasers have become one of the most important technologies in various industrial, medical and s...
Apart from the classical nonlinear polarization rotation (NPR) mechanism, we incorporate an addition...
We demonstrate a great variability of single-pulse (with only one pulse/wave-packet traveling along ...
Apart from the classical nonlinear polarization rotation (NPR) mechanism, we incorporate an addition...
We demonstrate a great variability of single-pulse (with only one pulse/wave-packet traveling along ...
AbstractWe demonstrate a great variability of single-pulse (with only one pulse/wave-packet travelin...
This work is financially supported by National Natural Science Foundation of China (62275060); Natur...
Mode-locked fiber lasers are able to generate transform-limited optical pulses in picosecond and sub...
Mode-locked fiber lasers are able to generate transform-limited optical pulses in picosecond and sub...
Paper no. CF3L.3We demonstrate nonlinear-polarization-evolution mode-locking in a ring-cavity Yb-fib...
We experimentally demonstrate the realization of a half-polarization-maintaining (half-PM) fiber las...
For the first time, to the best of our knowledge, in the soliton regime, we demonstrate an L-band fi...
We investigate a new configuration of a mode-locked fiber laser by using a nonlinear polarization ro...
Fiber lasers have become one of the most important technologies in various industrial, medical and s...
Fiber lasers have become one of the most important technologies in various industrial, medical and s...
Fiber lasers have become one of the most important technologies in various industrial, medical and s...
Apart from the classical nonlinear polarization rotation (NPR) mechanism, we incorporate an addition...
We demonstrate a great variability of single-pulse (with only one pulse/wave-packet traveling along ...
Apart from the classical nonlinear polarization rotation (NPR) mechanism, we incorporate an addition...
We demonstrate a great variability of single-pulse (with only one pulse/wave-packet traveling along ...
AbstractWe demonstrate a great variability of single-pulse (with only one pulse/wave-packet travelin...
This work is financially supported by National Natural Science Foundation of China (62275060); Natur...
Mode-locked fiber lasers are able to generate transform-limited optical pulses in picosecond and sub...
Mode-locked fiber lasers are able to generate transform-limited optical pulses in picosecond and sub...