Long-range periodic nanoplane gratings written inside fused silica using a focused femtosecond laser beam can be erased and replaced with new gratings whose orientation is determined by the polarization of the femtosecond laser overwrite beam.Peer reviewed: YesNRC publication: Ye
We investigate the formation of self-organized nanostructures inside the bulk of fused silica induce...
We demonstrate a polarization-sensitive diffractive optical element by femtosecond laser direct writ...
The local inscription of strong birefringence by ultrashort laser pulses facilitates the fabrication...
Tightly focused, linearly polarized, femtosecond laser radiation can produce highly birefringent nan...
We present the results of our investigations on the formation process of nanogratings in fused silic...
Self-assembled, sub-wavelength periodic structures are induced in fused silica by a tightly focused,...
Linearly polarized femtosecond light pulses, focused inside fused silica to an intensity that leads ...
We review recent progress in application of femtosecond laser nanostructuring of fused silica. The t...
Femtosecond laser radiation tightly focused in bulk fused silica is used to generate self-ordered na...
Under certain conditions, femtosecond lasers can be used to introduce self-organized nanogratings in...
With the proper choice of laser parameters focused femtosecond laser light creates long-range self-a...
Femtosecond laser is under intense study as a new laser processing tool which can induce refractive ...
Lorsqu’un faisceau laser femtoseconde est fortement focalisé sur des matériaux transparents, une ion...
In this study, we report on the erasure and rewriting of nanogratings by femtosecond laser pulses in...
We present femtosecond direct written optical components exhibiting circular birefringence. Based on...
We investigate the formation of self-organized nanostructures inside the bulk of fused silica induce...
We demonstrate a polarization-sensitive diffractive optical element by femtosecond laser direct writ...
The local inscription of strong birefringence by ultrashort laser pulses facilitates the fabrication...
Tightly focused, linearly polarized, femtosecond laser radiation can produce highly birefringent nan...
We present the results of our investigations on the formation process of nanogratings in fused silic...
Self-assembled, sub-wavelength periodic structures are induced in fused silica by a tightly focused,...
Linearly polarized femtosecond light pulses, focused inside fused silica to an intensity that leads ...
We review recent progress in application of femtosecond laser nanostructuring of fused silica. The t...
Femtosecond laser radiation tightly focused in bulk fused silica is used to generate self-ordered na...
Under certain conditions, femtosecond lasers can be used to introduce self-organized nanogratings in...
With the proper choice of laser parameters focused femtosecond laser light creates long-range self-a...
Femtosecond laser is under intense study as a new laser processing tool which can induce refractive ...
Lorsqu’un faisceau laser femtoseconde est fortement focalisé sur des matériaux transparents, une ion...
In this study, we report on the erasure and rewriting of nanogratings by femtosecond laser pulses in...
We present femtosecond direct written optical components exhibiting circular birefringence. Based on...
We investigate the formation of self-organized nanostructures inside the bulk of fused silica induce...
We demonstrate a polarization-sensitive diffractive optical element by femtosecond laser direct writ...
The local inscription of strong birefringence by ultrashort laser pulses facilitates the fabrication...