When intense femtosecond laser pulses are focused into a glass substrate, self-organized periodic nanostructures, so-called nanogratings, are generated in a certain parameter regime. To clarify the ultimate structure of the nanogratings we employed focused ion beam (FIB) milling and small angle X-ray scattering (SAXS). The results considerably show that voids are the primary constituents and their number increases with ongoing exposure to laser pulses. Potential applications will be highlighted
We investigate the formation of self-organized nanostructures inside the bulk of fused silica induce...
We report on nanostructures induced by tightly focused ultrashort laser pulses in the bulk of ULE gl...
The structural evolution from void modification to self-assembled nanogratings in fused silica is ob...
When intense femtosecond laser pulses are focused into a glass substrate, self-organized periodic na...
The fundamental formation process of nanogratings induced by focused ultrashort laser pulses inside ...
Sub-wavelength structures are a crucial ingredient for modern optics. A class of ultrashort laser pu...
Sub-wavelength structures are a crucial ingredient for modern optics. A class of ultrashort laser pu...
Sub-wavelength structures are a crucial ingredient for modern optics. A class of ultrashort laser pu...
The nanoscale structure of femtosecond laser-induced modifications known as "nanogratings" has been ...
The nanoscale structure of femtosecond laser-induced modifications known as nanogratings has been th...
The nanoscale structure of femtosecond laser-induced modifications known as nanogratings has been th...
The versatility of ultrashort laser pulses as a tool for laser materials processing has augmented pa...
The nanoscale structure of femtosecond laser-induced modifications known as nanogratings has been ...
The nanoscale structure of femtosecond laser-induced modifications known as nanogratings has been ...
We report on nanogratings inscribed by repetitive femtosecond laser pulses into the bulk of borosili...
We investigate the formation of self-organized nanostructures inside the bulk of fused silica induce...
We report on nanostructures induced by tightly focused ultrashort laser pulses in the bulk of ULE gl...
The structural evolution from void modification to self-assembled nanogratings in fused silica is ob...
When intense femtosecond laser pulses are focused into a glass substrate, self-organized periodic na...
The fundamental formation process of nanogratings induced by focused ultrashort laser pulses inside ...
Sub-wavelength structures are a crucial ingredient for modern optics. A class of ultrashort laser pu...
Sub-wavelength structures are a crucial ingredient for modern optics. A class of ultrashort laser pu...
Sub-wavelength structures are a crucial ingredient for modern optics. A class of ultrashort laser pu...
The nanoscale structure of femtosecond laser-induced modifications known as "nanogratings" has been ...
The nanoscale structure of femtosecond laser-induced modifications known as nanogratings has been th...
The nanoscale structure of femtosecond laser-induced modifications known as nanogratings has been th...
The versatility of ultrashort laser pulses as a tool for laser materials processing has augmented pa...
The nanoscale structure of femtosecond laser-induced modifications known as nanogratings has been ...
The nanoscale structure of femtosecond laser-induced modifications known as nanogratings has been ...
We report on nanogratings inscribed by repetitive femtosecond laser pulses into the bulk of borosili...
We investigate the formation of self-organized nanostructures inside the bulk of fused silica induce...
We report on nanostructures induced by tightly focused ultrashort laser pulses in the bulk of ULE gl...
The structural evolution from void modification to self-assembled nanogratings in fused silica is ob...