We propose a new concept of a fiber laser architecture supporting self-similar pulse evolution in the amplifier and nonlinear spectral pulse compression in the passive fiber. The latter process allows for transform-limited picosecond pulse generation, and improves the laser’s power efficiency by preventing strong spectral filtering from being highly dissipative. Aside from laser technology, the proposed scheme opens new possibilities for studying nonlinear dynamical processes. As an example, we demonstrate a clear period-doubling route to chaos in such a nonlinear laser system
We propose a novel mode-locked fiber laser design that relies on attracting similariton solutions in...
We propose a novel mode-locked fiber laser design that relies on attracting similariton solutions in...
We propose a new, simple approach to enhance the spectral compression process arising from nonlinear...
We propose a new concept of a fiber laser architecture supporting self-similar pulse evolution in th...
We propose a new concept of a fiber laser architecture supporting self-similar pulse evolution in th...
We propose and numerically demonstrate a new concept of fibre laser architecture supporting self-sim...
We propose and numerically demonstrate a new concept of fibre laser architecture supporting self-sim...
We propose and numerically demonstrate a new concept of fibre laser architecture supporting self-sim...
International audienceWe propose and numerically demonstrate a new concept of fibre laser architectu...
International audienceWe propose and numerically demonstrate a new concept of fibre laser architectu...
International audienceWe propose a new concept of a fiber laser architecture supporting self-similar ...
International audienceWe propose a new concept of a fiber laser architecture supporting self-similar ...
We numerically demonstrate a new fiber laser architecture supporting spectral compression of negativ...
International audienceWe numerically demonstrate a new fiber laser architecture supporting spectral ...
International audienceWe numerically demonstrate a new fiber laser architecture supporting spectral ...
We propose a novel mode-locked fiber laser design that relies on attracting similariton solutions in...
We propose a novel mode-locked fiber laser design that relies on attracting similariton solutions in...
We propose a new, simple approach to enhance the spectral compression process arising from nonlinear...
We propose a new concept of a fiber laser architecture supporting self-similar pulse evolution in th...
We propose a new concept of a fiber laser architecture supporting self-similar pulse evolution in th...
We propose and numerically demonstrate a new concept of fibre laser architecture supporting self-sim...
We propose and numerically demonstrate a new concept of fibre laser architecture supporting self-sim...
We propose and numerically demonstrate a new concept of fibre laser architecture supporting self-sim...
International audienceWe propose and numerically demonstrate a new concept of fibre laser architectu...
International audienceWe propose and numerically demonstrate a new concept of fibre laser architectu...
International audienceWe propose a new concept of a fiber laser architecture supporting self-similar ...
International audienceWe propose a new concept of a fiber laser architecture supporting self-similar ...
We numerically demonstrate a new fiber laser architecture supporting spectral compression of negativ...
International audienceWe numerically demonstrate a new fiber laser architecture supporting spectral ...
International audienceWe numerically demonstrate a new fiber laser architecture supporting spectral ...
We propose a novel mode-locked fiber laser design that relies on attracting similariton solutions in...
We propose a novel mode-locked fiber laser design that relies on attracting similariton solutions in...
We propose a new, simple approach to enhance the spectral compression process arising from nonlinear...