We investigate the formation of self-organized nanostructures inside the bulk of fused silica induced by ultrafast laser pulses at high repetition rates. Three distinct stages of the evolution from random nanostructures to periodic nanogratings are identified. In addition, for the first time nanograting formation in fused silica is observed at repetition rates as high as 9.4 MHz, thereby significantly extending the parameter window for nanograting inscription. Throughout the whole parameter range, a strong dependence of the grating period on the number of incident pulses was revealed
Femtosecond laser written nanogratings show a random transition from self-organized to disordered st...
Under certain conditions, femtosecond lasers can be used to introduce self-organized nanogratings in...
Under certain conditions, femtosecond lasers can be used to introduce self-organized nanogratings in...
We present investigations on the formation process of femtosecond-induced self-organized nanostructu...
Femtosecond laser radiation tightly focused in bulk fused silica is used to generate self-ordered na...
In this study, we report on the erasure and rewriting of nanogratings by femtosecond laser pulses in...
To gain insight into the processes mediating the cumulative action of subsequent laser pulses which ...
We present the results of our investigations on the formation process of nanogratings in fused silic...
We present the results of our investigations on the formation process of nanogratings in fused silic...
When intense femtosecond laser pulses are focused into a glass substrate, self-organized periodic na...
When intense femtosecond laser pulses are focused into a glass substrate, self-organized periodic na...
Femtosecond laser written nanogratings show a random transition from self-organized to disordered st...
Femtosecond laser written nanogratings show a random transition from self-organized to disordered st...
Femtosecond laser written nanogratings show a random transition from self-organized to disordered st...
Femtosecond laser written nanogratings show a random transition from self-organized to disordered st...
Femtosecond laser written nanogratings show a random transition from self-organized to disordered st...
Under certain conditions, femtosecond lasers can be used to introduce self-organized nanogratings in...
Under certain conditions, femtosecond lasers can be used to introduce self-organized nanogratings in...
We present investigations on the formation process of femtosecond-induced self-organized nanostructu...
Femtosecond laser radiation tightly focused in bulk fused silica is used to generate self-ordered na...
In this study, we report on the erasure and rewriting of nanogratings by femtosecond laser pulses in...
To gain insight into the processes mediating the cumulative action of subsequent laser pulses which ...
We present the results of our investigations on the formation process of nanogratings in fused silic...
We present the results of our investigations on the formation process of nanogratings in fused silic...
When intense femtosecond laser pulses are focused into a glass substrate, self-organized periodic na...
When intense femtosecond laser pulses are focused into a glass substrate, self-organized periodic na...
Femtosecond laser written nanogratings show a random transition from self-organized to disordered st...
Femtosecond laser written nanogratings show a random transition from self-organized to disordered st...
Femtosecond laser written nanogratings show a random transition from self-organized to disordered st...
Femtosecond laser written nanogratings show a random transition from self-organized to disordered st...
Femtosecond laser written nanogratings show a random transition from self-organized to disordered st...
Under certain conditions, femtosecond lasers can be used to introduce self-organized nanogratings in...
Under certain conditions, femtosecond lasers can be used to introduce self-organized nanogratings in...